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1

Frank H. Goodyear. "The Origins of American Photography: From Daguerreotype to Dry-Plate, 1839–1885: The Hallmark Photographic Collection at the Nelson-Atkins Museum of Art (review)." Technology and Culture 50, no. 2 (2009): 471–73. http://dx.doi.org/10.1353/tech.0.0242.

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Faber, Ben. "The Art of Divine Meditation in George Herbert’s The Temple." Christianity & Literature 66, no. 1 (2016): 73–89. http://dx.doi.org/10.1177/0148333116679117.

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George Herbert’s The Temple exemplifies the principles of Protestant meditation described by Joseph Hall in The Art of Divine Meditation (1606). Shaped by Catholic and Protestant traditions, Hall’s approach to meditation combines deliberate and extemporary reflection on natural and artificial objects. Like Hall, Herbert in The Temple practices the Augustinian habit of reading mundane signs as emblems with spiritual signification. More particularly Hallian are the stages—from the preparation of the subject for meditation through the dynamic concentration on the object of meditation to the transformation of the subject—that the reader of Herbert’s poems follows. Taken individually, in sets, and in the whole three-part collection, the sacred poems and private ejaculations of The Temple are spiritual exercises that bear the hallmarks of Anglican meditation.
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Boin, Douglas. "A late antique statuary collection at Ostia's sanctuary of Magna Mater: a case-study in late Roman religion and tradition." Papers of the British School at Rome 81 (September 26, 2013): 247–77. http://dx.doi.org/10.1017/s006824621300010x.

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Throughout the Mediterranean the study of the destruction, reuse, moving and preservation of statues has provided a window onto the transformation of Rome during a time of ascendant Christianity. The preservation of statuary collections is increasingly important in this regard. Archival research has revealed the discovery of one such collection at Ostia's Sanctuary of Magna Mater, a treasure trove of sculptures, reliefs and at least one bronze statue. All were well preserved, and several were found in the open spaces of the sanctuary. Together they span 500 years of history, stretching into the late fourth century. Unfortunately, the late antique significance of this group has never been acknowledged. This paper situates that collection within the social world of late antique Ostia, where many statues of both sacred and non-sacred subjects remained on display. The late fourth-century dedication, in particular, set alongside the earlier pieces, demonstrates that the ‘mood and motivations’ of traditional Roman religion, in Clifford Geertz's terms, also remained quite visible. The presence of this accumulated tradition, a hallmark of Rome's ‘civil religion’ for centuries, testifies to the high social status afforded one of Ostia's most historic sites, even during an increasingly Christian age.
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Gómez Coutouly, Yan Axel, and Charles E. Holmes. "THE MICROBLADE INDUSTRY FROM SWAN POINT CULTURAL ZONE 4b: TECHNOLOGICAL AND CULTURAL IMPLICATIONS FROM THE EARLIEST HUMAN OCCUPATION IN ALASKA." American Antiquity 83, no. 4 (2018): 735–52. http://dx.doi.org/10.1017/aaq.2018.38.

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Swan Point in central Alaska contains the oldest recognized human occupation in Alaska (Cultural Zone 4b [CZ4b]), dating to circa 14,000 cal BP. This component consists of a microblade and burin industry with clear technological ties to the Siberian Upper Paleolithic Diuktai Culture. Through the systematic use of the Yubetsu method for the production of microblades, Swan Point is technologically more similar to Siberian microblade sites than to later-age (Denali complex) microblade sites in Alaska. The Yubetsu method is the hallmark of the Diuktai Culture, and in Alaska, Swan Point CZ4b is the only component with systematic production of microblades using the Yubetsu method. Other late Pleistocene and Holocene microblade sites in Alaska have an industry based on Campus-style, conical, or tabular microblade cores. Analysis of the collection furthers our understanding of how CZ4b relates to previous Siberian Diuktai-related assemblages and to later Alaskan Denali-related sites. We interpret the CZ4b component as representing a brief single event that has major cultural and technological implications for the early colonization process of North America.
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Schaffert, Larissa-Nele, and Wayne G. Carter. "Do Post-Translational Modifications Influence Protein Aggregation in Neurodegenerative Diseases: A Systematic Review." Brain Sciences 10, no. 4 (2020): 232. http://dx.doi.org/10.3390/brainsci10040232.

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The accumulation of abnormal protein aggregates represents a universal hallmark of neurodegenerative diseases (NDDs). Post-translational modifications (PTMs) regulate protein structure and function. Dysregulated PTMs may influence the propensity for protein aggregation in NDD-proteinopathies. To investigate this, we systematically reviewed the literature to evaluate effects of PTMs on aggregation propensity for major proteins linked to the pathogenesis and/or progression of NDDs. A search of PubMed, MEDLINE, EMBASE, and Web of Science Core Collection was conducted to retrieve studies that investigated an association between PTMs and protein aggregation in seven NDDs: Alzheimer’s disease (AD), Parkinson’s disease (PD), Huntington’s disease (HD), amyotrophic lateral sclerosis (ALS), spinocerebellar ataxias, transmissible spongiform encephalopathy, and multiple sclerosis. Together, 1222 studies were identified, of which 69 met eligibility criteria. We identified that the following PTMs, in isolation or combination, potentially act as modulators of proteinopathy in NDDs: isoaspartate formation in Aβ, phosphorylation of Aβ or tau in AD; acetylation, 4-hydroxy-2-neonal modification, O-GlcNAcylation or phosphorylation of α-synuclein in PD; acetylation or phosphorylation of TAR DNA-binding protein-43 in ALS, and SUMOylation of superoxide dismutase-1 in ALS; and phosphorylation of huntingtin in HD. The potential pharmacological manipulation of these aggregation-modulating PTMs represents an as-yet untapped source of therapy to treat NDDs.
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Akee, Randall, Stephanie R. Carroll, and Chandra L. Ford. "Tools to Promote Equity and Best Practices." American Indian Culture and Research Journal 44, no. 3 (2020): 1–4. http://dx.doi.org/10.17953/aicrj.44.3.akee_carroll_ford.

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This is the second volume of a two-volume special issue of the American Indian Culture and Research Journal dedicated to the indirect impact of COVID-19 on Indigenous Peoples. The first, 44.2, reports on COVID-19’s extensive impact on Indigenous Peoples and the resulting variety of responses at community and local levels. This second volume, 44.3, provides specific research and insights for improving reporting, identification, and prevention of COVID-19 cases and deaths. Several contributors to this issue respond to the urgent need to ensure, for small populations, and Indigenous Peoples in particular, that data collection provides detailed information on race and tribal nation identifiers. Like this lack of data disaggregation, data inaccuracy also impedes understanding of the impact of a pandemic. Other researchers find that a hallmark of this pandemic—the shift from in-person to virtual interactions in many aspects of life—has clarified that innovative telehealth and virtual methods already underway for Indigenous Peoples may represent the frontiers of better health care, access, and service. “Moving Forward: No Scientific Integrity without an Acknowledgment of Past Wrongs,” a commentary emphasizing the necessary actions the US government must take if progress is to be made, concludes this special issue.
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Chambrey, Régine, Dominique Goossens, Soline Bourgeois, et al. "Genetic ablation of Rhbg in the mouse does not impair renal ammonium excretion." American Journal of Physiology-Renal Physiology 289, no. 6 (2005): F1281—F1290. http://dx.doi.org/10.1152/ajprenal.00172.2005.

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NH4+ transport by the distal nephron and NH4+ detoxification by the liver are critical for achieving regulation of acid-base balance and to avoid hyperammonemic hepatic encephalopathy, respectively. Therefore, it has been proposed that rhesus type B glycoprotein (Rhbg), a member of the Mep/Amt/Rh NH3 channel superfamily, may be involved in some forms of distal tubular acidosis and congenital hyperammonemia. We have tested this hypothesis by inactivating the RHbg gene in the mouse by insertional mutagenesis. Histochemical studies analyses confirmed that RHbg knockout (KO) mice did not express Rhbg protein. Under basal conditions, the KO mice did not exhibit encephalopathy and survived well. They did not exhibit hallmarks of distal tubular acidosis because neither acid-base status, serum potassium concentration, nor bone mineral density was altered by RHbg disruption. They did not have hyperammonemia or disturbed hepatic NH3 metabolism. Moreover, the KO mice adapted to a chronic acid-loading challenge by increasing urinary NH4+ excretion as well as their wild-type controls. Finally, transepithelial NH3 diffusive permeability, or NH3 and NH4+ entry across the basolateral membrane of cortical collecting duct cells, measured by in vitro microperfusion of collecting duct from KO and wild-type mice, was identical with no apparent effect of the absence of Rhbg protein. We conclude that Rhbg is not a critical determinant of NH4+ excretion by the kidney and of NH4+ detoxification by the liver in vivo.
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Schick, Alana, and Rees Kassen. "Rapid diversification of Pseudomonas aeruginosa in cystic fibrosis lung-like conditions." Proceedings of the National Academy of Sciences 115, no. 42 (2018): 10714–19. http://dx.doi.org/10.1073/pnas.1721270115.

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Chronic infection of the cystic fibrosis (CF) airway by the opportunistic pathogen Pseudomonas aeruginosa is the leading cause of morbidity and mortality for adult CF patients. Prolonged infections are accompanied by adaptation of P. aeruginosa to the unique conditions of the CF lung environment, as well as marked diversification of the pathogen into phenotypically and genetically distinct strains that can coexist for years within a patient. Little is known, however, about the causes of this diversification and its impact on patient health. Here, we show experimentally that, consistent with ecological theory of diversification, the nutritional conditions of the CF airway can cause rapid and extensive diversification of P. aeruginosa. Mucin, the substance responsible for the increased viscosity associated with the thick mucus layer in the CF airway, had little impact on within-population diversification but did promote divergence among populations. Furthermore, in vitro evolution recapitulated traits thought to be hallmarks of chronic infection, including reduced motility and increased biofilm formation, and the range of phenotypes observed in a collection of clinical isolates. Our results suggest that nutritional complexity and reduced dispersal can drive evolutionary diversification of P. aeruginosa independent of other features of the CF lung such as an active immune system or the presence of competing microbial species. We suggest that diversification, by generating extensive phenotypic and genetic variation on which selection can act, may be a key first step in the development of chronic infections.
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Klein, Hans, and Amy Pinkham. "M69. IMPROVING VISUAL ATTENTION TO SOCIAL STIMULI IN INDIVIDUALS WITH SCHIZOPHRENIA." Schizophrenia Bulletin 46, Supplement_1 (2020): S161—S162. http://dx.doi.org/10.1093/schbul/sbaa030.381.

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Abstract Background Social dysfunction is a hallmark characteristic of schizophrenia, and individuals with this disorder often report difficulty navigating daily social interactions. Perceptual deficits, such as faulty visual attention to important aspects of social stimuli (i.e., failing to look at the most relevant portions of a stimulus), may be one mechanism by which social deficits arise. Faulty modulation of specific neural regions such as the right temporoparietal junction (rTPJ), may underlie visual attention abnormalities, and may act as suitable targets for neurostimulation. The current study utilizes neurostimulation to experimentally manipulate specific neural networks and determine whether stimulation 1) improves visual attention, 2) improves performance on social cognitive tasks, and 3) whether altered visual attention moderates this improved performance. Methods Using a double-blind crossover design, participants underwent both active and sham stimulation via tDCS approximately one week apart. Half of the participants received active and sham stimulation of rTPJ (n = 22), while the other half received active and sham stimulation of a comparator site within the social brain network (dmPFC, n = 23). After stimulation, visual attention was assessed through concurrent eye-tracking while participants complete several tasks of social cognition (emotion recognition: ER40, BLERT; Theory of Mind: TASIT). Visual attention was determined as the proportion of time spent attending to socially and contextually important AOIs. Results Data collection and data processing are still ongoing for this study, however planned interim analyses on a subset of the total sample (n = 45) indicate small to medium effects of active stimulation to the rTPJ compared to sham and dmPFC stimulation for both visual attention (ηp2=.035) and social cognitive performance on the BLERT task (ηp2=.067), specifically. These same effects are not seen in the other social cognitive tasks. Final analyses based on a sample size of 72 individuals are expected to be complete prior to presentation at SIRS 2020. Discussion This study is the first, to our knowledge, to target this neural region within schizophrenia for the purposes of improving visual attention and, subsequently, social cognition. Should the pattern of results from our interim analyses hold after completion of data collection, results indicate that active stimulation to the rTPJ has a unique impact on dynamic emotional stimuli, improving visual attention and accuracy in emotion recognition, suggesting a primary role of the rTPJ and visual attention in performance on this task. The intricate design of this study allows for thorough investigation of potential mechanisms by which social cognitive deficits develop, and the use of novel experimental techniques align with the theme of this year’s conference.
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Sampath, Deepak, Elizabeth Punnoose, Erwin R. Boghaert, et al. "Expression of Bcl-2 Pro-Survival Family Proteins Predicts Pharmacological Responses to ABT-199, a Novel and Selective Bcl-2 Antagonist, in Multiple Myeloma Models." Blood 120, no. 21 (2012): 5028. http://dx.doi.org/10.1182/blood.v120.21.5028.5028.

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Abstract Abstract 5028 Multiple myeloma (MM) is a hematological malignancy of the bone marrow caused by the dysregulated proliferation of monoclonal antibody producing plasma cells. A hallmark feature of cancer is the ability to evade cell death signals induced by stress response cues. The Bcl-2 family of proteins regulates the intrinsic apoptosis pathways and consists of pro-apoptotic (Bax, Bak, Bad, Bim, Noxa, Puma) and pro-survival (Bcl-2, Bcl-xL, Mcl-1); the balance of which dictates the life or death status of MM tumor cells. Thus, there is a strong rationale to target members of the Bcl-2 proteins for the treatment of MM. ABT-199 is a potent BH3-only mimetic that selectively antagonizes Bcl-2 and is currently in phase I clinical trials for the treatment of hematological malignancies. Therefore, we evaluated the efficacy of ABT-199 as a single agent and in combination with standard of care drugs such as Velcade (bortezomib) in preclinical models of MM. A panel of 21 human MM cell lines was evaluated in vitro for to sensitivity to ABT-199. ABT-199 potently inhibited cell viability in a sub-set of MM cell lines (7/21) with EC50 values less than 1 μM. Expression of Bcl-2, Bcl-xL, Mcl-1, Bim and other Bcl-2 family proteins were evaluated by protein and mRNA. Cell line modeling identified thresholds for expression of Bcl-2, Bcl-xL and Mcl-1 that best predicted sensitivity and resistance to ABT-199 and the dual Bcl-2/Bcl-xL antagonist, navitoclax. Consistent with the target inhibition profile of these drugs, we found that MM lines that were Bcl-2high/Bcl-xLlow/Mcl-1low are the most sensitive to ABT-199 treatment. Whereas cell lines that are Bcl-xLhigh remain sensitive to navitoclax but not ABT-199. MM cell lines that are Mcl-1high are less sensitive to both ABT-199 and navitoclax, suggesting that Mcl-1 is a resistance factor to both drugs. Utilizing a novel Mesoscale Discovery based immunoassay we determined that levels of Bcl-2/Bim complexes also correlated with sensitivity of ABT-199 in the MM cell lines tested. In addition, the t(11;14) status in these cell lines associated with sensitivity to ABT-199. The clinical relevance of the Bcl-2 pro-survival expression pattern in MM cell lines, was determined by a collection of bone marrow biopsies and aspirates (n=27) from MM patients by immunohistochemistry for prevalence of Bcl-2 and Bcl-xL. Similar to our in vitro observations, the majority (75%) of the MM bone marrow biopsies and aspirates had high Bcl-2 levels whereas 50% had high Bcl-xL expression. Therefore, a subset of patient samples (33%) were identified with a favorable biomarker profile (Bcl-2high/Bcl-xLlow) that may predict ABT-199 single agent activity. ABT-199 synergized with bortezomib in decreasing cell viability in the majority of MM cell lines tested in vitro based on the Bliss model of independence analyses (Bliss score range = 10 to 40). However the window of combination activity was reduced due to high degree of sensitivity to bortezomib alone. Therefore, the combination efficacy of ABT-199 and bortezomib was further evaluated in vivo in MM xenograft models that expressed high levels of Bcl-2 protein (OPM-2, KMS-11, RPMI-8226, H929 and MM. 1s). Bortezomib treatment alone at a maximum tolerated dose resulted in tumor regressions or stasis in all xenograft models tested. ABT-199 at a maximum tolerated dose was moderately efficacious (defined by tumor growth delay) as a single agent in xenograft models that expressed high protein levels of Bcl-2 but relatively lower levels of Bcl-xL. However, the combination of ABT-199 with bortezomib significantly increased the overall response rate and durability of anti-tumor activity when compared to bortezomib, resulting in increased cell death in vivo. Treatment with bortezomib increased levels of the pro-apoptotic BH3-only protein, Noxa, in MM xenograft models that expressed high levels of Mcl-1. Given that the induction of Noxa by bortezomib results in neutralization of Mcl-1 pro-survival activity in MM models [Gomez-Bougie et al; Cancer Res. 67:5418–24 (2007)], greater efficacy may be achieved when Bcl-2 is antagonized by ABT-199 thereby inhibiting pro-survival activity occurring through either Bcl-2 or Mcl-1 and increasing cell death. Thus, our preclinical data support the clinical evaluation of ABT-199 in combination with bortezomib in MM patients in which relative expression of the Bcl-2 pro-survival proteins may serve as predictive biomarkers of drug activity. Disclosures: Sampath: Genentech: Employment, Equity Ownership. Punnoose:Genentech: Employment, Equity Ownership. Boghaert:Abbott Pharmaceuticals: Employment, Equity Ownership. Belmont:Genentech: Employment, Equity Ownership. Chen:Abbott Pharmaceuticals: Employment, Equity Ownership. Peale:Genentech: Employment, Equity Ownership. Tan:Genentech: Employment, Equity Ownership. Darbonne:Genentech: Employment, Equity Ownership. Yue:Genentech: Employment, Equity Ownership. Oeh:Genentech: Employment, Equity Ownership. Lee:Genentech: Employment, Equity Ownership. Fairbrother:Genentech: Employment, Equity Ownership. Souers:Abbott Pharmaceuticals: Employment, Equity Ownership. Elmore:Abbott Pharmaceuticals: Employment, Equity Ownership. Leverson:Abbott Pharmaceuticals: Employment, Equity Ownership.
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Killgore, William, Sara Cloonan, Emily Taylor, Michael Grandner, and Natalie Dailey. "715 Insomnia as a Risk for PTSD During the COVID-19 Pandemic." Sleep 44, Supplement_2 (2021): A279. http://dx.doi.org/10.1093/sleep/zsab072.713.

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Abstract Introduction The COVID-19 pandemic and associated attempts to curb its spread have led to a significant increase in mental health issues. Evidence suggests that sleep provides a protective resilience against the adverse effects of stress. Moreover, sleep disruption is often considered the “hallmark symptom” of posttraumatic stress disorder (PTSD). Here we hypothesized that insomnia would increase during the first six months of the pandemic, and that higher insomnia would be associated with elevated rates of PTSD. Methods A total of 6,190 adults ranging in age from 18 to 84 years (53.6% female), completed an online cross-sectional survey at one of six time points between April and September 2020 (~1,000 per administration). Instruments included the Insomnia Severity Index (ISI), Primary Care PTSD Checklist (PC-PTSD), and the PTSD Checklist-5 (PCL-5). Standard clinical cutoffs were used for ISI (≥10) and PCL-5 (≥38). Data were analyzed with analysis of variance, chi-square contingency tables, and bivariate correlations. Results Over the first six-months of the pandemic, PTSD increased with each passing month on both the PC-PTSD (p=.001) and PCL-5 (p<.0001). Similarly, ISI scores increased month-by-month (p<.0002). Insomnia scores were highly correlated with PCL-5 PTSD scores (r=.62, p<.0001), even when sleep items on the scale were excluded (r=.60, p<.0001). Finally, the rate of PTSD remained below 5% across all months for those without insomnia, but among those with insomnia, the prevalence of PTSD increased between May (26% positive) and September (40% positive), representing an increase of 56% over the data collection period (interaction p=.0004). Conclusion Both insomnia and PTSD have increased dramatically over the first six months of the COVID-19 pandemic. Moreover, insomnia appears to be highly linked with the emergence of PTSD during this time. While it is not possible to make causal attributions from these cross-sectional findings, the steadily increasing rates of PTSD over time only among those with insomnia, raise the possibility that sleep disruption could act as a diathesis for the development of PTSD symptoms in response to the pandemic. Addressing insomnia during the pandemic may be an important aspect of maintaining psychological resilience in the populace. Support (if any):
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Tait, Noel N., Ivo de Sena Oliveira, and Georg Mayer. "Translation of N.B.K. Sänger’s (1871) “Peripatus capensis Gr. and Peripatus leuckartii n. sp.” (Onychophora), along with remarks about the author and significance of his work." Australian Zoologist, August 4, 2021. http://dx.doi.org/10.7882/az.2021.022.

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ABSTRACT The basic biology of onychophorans was revealed slowly and controversially during much of the 19th century. Communications were in Latin, French, Spanish, German and English. This information was synthesised in the monumental monographs of Bouvier in 1905 and 1907. However, amongst this multicultural endeavour is a significant Russian contribution by Nikolai Sänger, a student of Professor Leuckart of the Zoological Institute in Leipzig, Germany. Sänger requested a specimen of Onychophora from the Institute’s collection for serial sectioning. This resulted in a detailed account of the anatomy of Peripatopsis capensis. Sänger’s description of the extensive slime glands was the first to recognise them as the hallmark of onychophorans for defence and prey capture, and not the male reproductive system as previously claimed. Based on these morphological observations, he correctly concluded that onychophorans are not hermaphrodites and, furthermore, are “predominantly predaceous” animals. He further appropriately assigned the slime glands and salivary glands to the slime papilla segment, despite the lack of embryological data at that time. Sänger also identified the excretory organs (nephridia) and their openings, although he erroneously assigned them to a dual role of excretion and respiration. Moreover, he highlighted the importance of the position of the genital opening as a diagnostic character, described the ventral/preventral organs as “subcutaneous glandules”, identified the neurilemma enclosing the central nervous system, and recognised “oval holes of different sizes” in each nerve cord that were subsequently demonstrated to represent giant fibres. Of interest to parasitologists, he discovered a larval acanthocephalan encysted within the cutaneous muscles of his specimen of P. capensis, suggesting that onychophorans act as a secondary host for this parasite. Sänger’s memoir concludes with a brief but important description of the first species of Onychophora recorded from Australia, “northwest of Sydney, New Holland”. This species is now known as Euperipatoides leuckartii with a neotype designated from a specific location northwest of Sydney.
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Bidwell, Gene, Jamarius Waller, Jason Engel, and Alejandro Chade. "P0117DOSE ESCALATING TOXICOLOGY STUDY OF ELP-VEGF, A NOVEL BIOLOGIC FOR RENAL THERAPEUTIC ANGIOGENESIS." Nephrology Dialysis Transplantation 35, Supplement_3 (2020). http://dx.doi.org/10.1093/ndt/gfaa142.p0117.

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Abstract Background and Aims Chronic renal disease, irrespective of the etiology, is hallmarked by renal microvascular rarefaction. This rarefaction is associated with a reduced bioavailability of the pro-angiogenic cytokine vascular endothelial growth factor (VEGF). Recently, we developed a therapeutic intervention for ischemic renal conditions using therapeutic angiogenesis – supplementing renal VEGF levels. This was achieved by administration of a biopolymer-stabilized form of VEGF using a fusion protein between human VEGF-A121 and an elastin-like polypeptide carrier protein (ELP-VEGF). ELP-VEGF induced microvascular remodeling and increased microvascular density when administered intra-renally in swine models of unilateral renovascular disease (RVD) and chronic kidney disease (CKD), which was associated with improved renal function, reduced renal inflammation, and reduced renal fibrosis. Also, ELP-VEGF targeted the kidney when administered systemically and induced similar beneficial effects on renal function and renal vascular density. The therapeutic dose of ELP-VEGF in the swine models was 0.1 mg/kg when administered intra-renally and 1.0 mg/kg when administered intravenously. The aims of the present study were to determine the maximum tolerated dose of ELP-VEGF and assess its dose-related toxicity. We hypothesize that ELP-VEGF will not exhibit toxicity at therapeutic doses. Method A dose escalating toxicology experiment was performed in Sprague Dawley. Female rats were instrumented with either carotid catheters or carotid artery telemeters for blood pressure monitoring. After a recovery period, a baseline 24-hour urine sample was collected, and baseline glomerular filtration rate (GFR) was measured by monitoring FITC-sinistrin clearance via transdermal fluorescence. A single injection of saline control or ELP-VEGF (0.1, 1, 10, 100, or 200 mg/kg) was administered, and blood pressure was monitored by telemetry or by direct carotid arterial pressure measurements. Body weights were monitored daily throughout the study, and 24-hour urine collections and GFR measurements were repeated 7 and 14 days after protein injection. On day 14 after injection, blood was collected, one kidney was collected and fixed for histological examination, and the second kidney was perfused with Microfil vascular contrast agent for quantification of renal vascular density by micro-CT. Results ELP-VEGF caused no significant changes in body weight at any dose. At the highest doses there was an acute drop in blood pressure (20 – 30 mm Hg at 100 and 200 mg/kg dose, respectively) for approximately twenty minutes post-injection which then normalized. GFR was unchanged by ELP-VEGF at doses up to 100 mg/kg. However, GFR was significantly increased 14 days after treatment with 200 mg/kg ELP-VEGF (1.5 +/- 0.3 versus 2.7 +/- 0.3 mL/min/100 g body weight, p=0.0021). Plasma toxicology revealed no changes in markers of liver or kidney toxicity (AST, ALT, BUN, creatinine, LDH, bilirubin) at any dose or time point. Renal vascular density was unaffected by ELP-VEGF at doses up to 10 mg/kg. However, at 200 mg/kg ELP-VEGF, renal vascular density was significantly decreased for small (0 – 100 micron, p=0.0007) and intermediate (100 – 200 micron, p=0.028) sized vessels Conclusion ELP-VEGF has a proven therapeutic potential for treatment of RVD and CKD at therapeutic doses ranging from 0.1 – 1.0 mg/kg in swine models. Dose escalating toxicity assessment in rats found no effect of ELP-VEGF on body weight, blood pressure, plasma markers of liver and renal toxicity, GFR, or renal vascular density at these therapeutic doses. ELP-VEGF doses of 100 – 200 mg/kg caused transient hypotension immediately after the injection and were associated with increased GFR and loss of renal vascular density, possibly indicating renal damage at ultra-high doses. We conclude that the therapeutic window for ELP-VEGF is 100 – 1,000 times the effective therapeutic dose.
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Antonio, Amy Brooke. "Writing Women: The Virtual Cookbook and Pinterest." M/C Journal 16, no. 3 (2013). http://dx.doi.org/10.5204/mcj.644.

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This article aims to throw new light on the representation of women who cook as necessarily perpetuating a domestic ideology in which women are confined to the home. Traditionally, cookbooks written by women have disseminated both cooking information and rules and practices for running an effective household, which have contributed to the ideologies that underpin female domestic practice. However, the evolution of social media platforms, such as Pinterest, which enable the user to actively select and visually display culinary masterpieces on a digital pinboard, have provided a forum for women’s voices and a novel means of expression that is available to the amateur cook and professional chef alike. This article will argue that the creation of a virtual cookbook, via Pinterest, is a means of empowering women, which is central to the lexicon of feminist debate. Rather than being the victims of domestic servitude, this article will argue that the women who create virtual cookbooks do so by choice, and as a means of pleasing the self, irrespective of achieving domestic or marital bliss. Cookbooks “provide a range of insights into everyday life, such as attitudes towards food, domestic economy and the roles of women” (Wessell and Wishart 1). The proliferation of the cooking industry in the form of television programs, celebrity chefs, and social media channels seemingly devoted to the display of culinary artefacts, has transformed what was once a domestic chore into a professional practice. Traditionally, cookbooks that contained information on both the preparation and cooking of food and advice on how to run an effective household were more like guidebooks for women on how to achieve domestic and marital happiness. According to Jenny Lawson, well-known and highly acclaimed cookbooks such as Mrs. Beeton’s Book of Household Management were published as a reaction against eating-out, which was drawing men away from the home. “This aligned a cultural expectation of female domestic servitude with gaining the love and respect of a male partner” (Lawson 348) and reinforced the now familiar proverb that the way to a man’s heart is through his stomach. More recently, How to be a Domestic Goddess highlights the distance between feminism and cooking (Lawson). The book, according to Joanne Hollows, equates baking with a false consciousness and suggests that baking is not far removed from domestic enslavement. This conceptualisation of the-woman-in-the-kitchen is intimately bound to the views of second-wave feminists who believe that cooking is a sign of traditional femininity, which is at odds with a feminist identity (Ashley et al.). This argument situates cooking and food within debates about the sexual division of labour and positions women as providers of food for others. “Women frequently use food to offer pleasure to family members, yet have difficulty experiencing food as pleasurable themselves, particularly in a domestic context” (Hollows 184). Anne Murcott’s It’s a Pleasure to Cook for Him argues that the choice of what to cook and eat is invariably done in the service of some others. Marjorie DeVault similarly asserts that it is the relationship between cooking and caring that cements the relationship between cooking and femininity, while Charles and Kerr conclude that because women fear gaining weight, they deprive themselves of pleasure and so prepare food for others to give pleasure. Women fundamentally cook to please, and please men in particular (Charles and Kerr). For Charles and Kerr, the pleasure that women get from cooking for men is a by-product of the pleasure they receive from caring for others. The notion that women cook out of a desire to care for others is an argument left over from the patrilineal delineations outlined in Biblical texts. Western civilisation has drawn its leading metaphors and definitions of gender from the Bible, specifically the Book of Genesis. As a result of the Fall, which proceeded Adam and Eve’s sin in the Garden of Eden, the sexual division of labour emerged. Adam was instructed to work, and Eve was punished with the pain of childbearing and motherhood. Traditionalist assumptions posited that the assignment of different tasks and roles to men and women was evidence of the naturalness of their respective responsibilities. This explanation focused on women’s reproductive capacity and reiterated motherhood—central to which was an obligation to care for and nurture others—as a woman’s chief goal, which was necessary for the continued promulgation of the species (Lerner). In the nineteenth century, the credibility of this argument was questioned and a scientific explanation was used to justify patriarchy and women’s place within the home. Darwinian theories continued to define women according to their maternal role and justified their exclusion from economic and educational opportunities on the grounds that this was in the best interests of the survival of the species (Lerner). This contributed to the prevailing “cult of domesticity” that was the hallmark of the nineteenth and beginning of the twentieth century. According to this ideological position, true women were supposed to devote themselves to unpaid domestic labour and refrain from paid work. Each of these positions served to reinforce women’s responsibility within the home and, for centuries, women have participated in their own subordination by internalising the proscriptive belief that they exist solely to propagate the human race. If caring and nurturing others is the condition on which cooking is deemed to be “feminine”, then cooking to please oneself should negate the argument that cooking is a “feminine” activity. This article will suggest that the creation of virtual cookbooks on Pinterest enables women to resist societies continued attempts at defining femininity in increasingly restrictive ways. It will be argued that women who create virtual cookbooks do so by choice and as a means of pleasing the self. The representation of celebrity chef Nigella Lawson will be used to elucidate the reconceptualisation of cooking as a pleasurable activity. She is able to distinguish between leisure time and work-related culinary activity and, in so doing, she is represented as enjoying cooking in and of itself, not as a domestic responsibility. Building on this notion of cooking as pleasure, it will be argued that women who create virtual cookbooks on Pinterest do so by choice, for both personal and professional reasons, and irrespective of a desire to please others. Whilst Pinterest has raised significant debate as to whether or not it actually perpetuates gender stereotypes traditionally associated with cooking and femininity, this article will suggest that the desire to cook and a belief in equal rights for women are not mutually exclusive. For the purpose of this article, feminism and contemporary femininity are articulated around the idea of choice. Women are not choosing to create virtual cookbooks on Pinterest for the benefit of men. They are choosing to embrace this platform and are using it as a means of creative expression and an outlet of empowerment that transforms cooking from a domestic chore into an activity with public significance. This “promotes a new female relationship with food, enabling the other sides of femininity, those subversive, darker, abject possibilities to surface” (Lawson, Food Legacies 361), which ultimately grants women moments of agency and transcendence through cooking. Nigella Lawson, who cooks out of a desire for solitary pleasure, epitomises the changing nature of the cookbook throughout the last century. In Feast, she advocates the need for self-satisfaction and independence: “At its most basic, perhaps, is the quiet satisfaction of knowing one is fending for oneself, the instrument of one’s own survival” (4). According to Elisabeth Nathanson, “thinking about cooking as personally satisfying, rather than as a task associated with taking care of one’s family, denotes a new articulation of contemporary femininity” (318). For the purpose of this article then, feminism simply refers to the notion of choice and pleasing the self. Cooking is no longer an activity conducted solely by women in the privacy of their own home, for the purpose of caring for others. Female celebrity chefs, such as Nigella Lawson, draw attention to a particular ethos of pleasing the self as opposed to others. According to Jenny Lawson, Nigella Lawson renegotiates her cooking duties for her own cause (Food Legacies). She disrupts notions of female care and responsibility by “embracing self-satisfaction and indulgence” (Lawson, Disturbing 82) and, in this way, she negotiates a feminine identity that “hovers between the polarised figures of ‘the feminist’ and ‘the housewife’” (Hollows 180). According to Hollows, Nigella Lawson’s work offers an alternative way of imagining women’s relationship to food, which is based on the pleasure of cooking and eating, rather than pleasing others. The Nigella Lawson cooking philosophy posits that cooking should be pleasurable and should start from a desire to eat. Lawson is represented as aware of what she wants to eat and she does not defer to the preferences of others. She separates cooking from the notion of “cooking for”, which allows us to appreciate cooking as a pleasure in, and of, itself. It should be noted, however, that Nigella Lawson is a successful businesswoman who has made her success from her status as a woman-in-the-kitchen. Her programs are carefully constructed to show her prioritising leisure time and cooking to please the self (Lawson, Food Legacies). Although Lawson has encouraged women to cook to please, this is not the sole reason why she cooks. Her brand identity depends on her appearing as though she cooks for pleasure and yet she is undoubtedly, at least in part, driven by economic motivations. Although the cookbooks of the past have promoted a particular lifestyle for other women to emulate (Lawson, Disturbing), they nevertheless represented elements of the private sphere where women were able to wield authority and bequeath their knowledge to other women (Theophano). Throughout history, Janet Theophano notes, women have shared their prize recipes as a vehicle for making themselves visible. As early as the eighteenth century, cookbooks were a way for women to gain economic independence and authority. The formation of cookbooks provided women with an opportunity to enter the professional domain of culinary writing, which served to remove cooking from domestic life. Flora Pell’s Our Cookery Book, first published in 1916, blurred the boundary between the notion of private and public spheres. Pell advocated that a woman’s place was in the home and she upheld socially conservative gender roles and yet she was, paradoxically, a career woman who remained unmarried until she was sixty years old (Wessell and Wishart). Pell’s cookbook reinforced stereotypes of the woman-in-the-kitchen and domestic goddess, whose primary occupation in life was to please others and men in particular. The emergence of Pinterest in 2010, however, a virtual platform that enables the user to post and share images of whatever they choose, has further transformed cooking from a “chore without glamour or choice” (Wessell and Brien 87) into an optional, albeit pleasurable, form of play. This innovative platform has opened up new possibilities for users, more than 70 per cent of whom are women, to find novel means of personal expression via the creation of virtual cookbooks. Pinterest has been self-defined as a space that is perfect for recipe sharing, which is not dissimilar to the practice of compiling family recipes into a book and cutting and pasting extracts from a magazine into one’s own personal collection. Pinterest, however, enables the user to share this collection with others and transforms what has been seen as a private practice into a public activity. Pinterest has transformed the creation of a personal recipe collection from a domestic chore into a commercial venture, which is evident when scrolling through endless pins promoting catering businesses and cake-baking services. Pinterest is, potentially, a great tool for enhancing and even structuring the user’s culinary dreams. The platform has not been without its critics who are polarized, between those who believe that women who use this tool to curate digital recipe collections are in some way undoing or even killing feminism by pinning images that reinforce stereotypes of femininity, and those who believe that because women are pinning these images by choice, it defies traditional notions of femininity previously attached to cooking. The former view posits that female users of Pinterest are pinning images that are aligned with the “traditional” woman, such as cooking, do-it-yourself home-wares and crafts, rather than the “modern” woman who does not want to be seen as different from a man. Advocates of Pinterest, in contrast, argue that the platform is a natural path for reform, noting, in particular, the increased opportunity it provides women for voice and creative expression. This latter position supports the central premise of this article, which suggests that a woman can have both an interest in cooking and a belief in equal rights for women. In the words of Antonia Hayes “we have the luxury of choosing what sort of woman we want to be, including the freedom to be both a feminist and a connoisseur of cauliflower pizzas” (online). Pinterest celebrates the fact that there is no right or wrong way to be a woman. As a platform, Pinterest allows women to rewrite the meanings that have been assigned to them as passive individuals, devoid of a voice, and provides women with the opportunity for expression through the self-publication of digital cookbooks. In Amy Odell’s How Pinterest is Killing Feminism, she labels Pinterest “the Mormon housewife’s image bookmarking service of choice”, which creates a “Stepford Wife” version of identity that is hollow and uncreative. Odell argues that the user-generated content, which is made up predominantly of recipes, home décor, fitness, and fashion, is evidence that women are conditioned to “seek out the retrograde, materialistic content that women’s magazines have been hawking for decades” (online). She further asserts that, “adult women are still conditioned to think about diet and exercise and looking beautiful … so it makes sense that they’d pin these things” (online). She takes particular issue with the diet recipes on Pinterest, such as low-carbohydrate pizza crusts made with crumbed cauliflower, which she argues are indicative of women’s internalised belief that they must be thin in order to be beautiful. This is an image that she argues is synonymous with women’s magazines and Pinterest alike, which she sees as being similarly inundated with images of unrealistic body types. The difference, however, which Odell overlooks, is that the content on Pinterest does not bombard us like a magazine or billboard. The content on Pinterest is user-generated; it is uploaded by our fellow Pinterest users. Women are curating their own experience on the site. They are not victims but actors. Odell’s stance is the antithesis of a feminist argument as it makes women the victims of the media. In order to buy into her argument, you have to assume that all female Pinterest users are one dimensional and easily led, which hardly sounds like a powerful feminist position. Odell’s argument also neglects the role played by male chefs, such as Jamie Oliver, whose recipe books are attempting to curb the obesity epidemic, by focusing on quick and easy meals that are also nutritionally beneficial, hence their respective titles underlining that they are “30-minute” and “15-minute meals”. Given that the latter involves the atempted preparation of an entire meal in 15-minutes, you can rest assured that you will be eating salads that can easily be tossed together in this stringent time frame, rather than sweets and treats. That being said, no one is accusing Oliver of being a victim of the media’s unrealistic portrayal of the human body simply because he advocates the cooking of healthy recipes. This begs the question as to why women who pin healthy recipes, such as cauliflower pizza crusts, and create virtual cookbooks are necessarily victims of the unattainable body syndrome. Odell suggests that cooking and feminism are mutually exclusive and she makes the uncomfortable suggestion that by pinning diet recipes that perpetuate negative body image, and posting and disseminating pretty pictures of culinary delights, women are, as the title of her post suggests, killing feminism. Odell’s diatribe is being met with fierce opposition by Pinterest users who identify as post-feminists. Post-feminists posit that gender equality has been achieved and that women are free to choose their lifestyles in both public and private worlds (Nathanson). This article builds on the premise that pinners perform post-feminism and that women curate visual manifestations of their capacity to “have-it-all”; choice, empowerment and licensed transgression. Nathan Jurgenson, the author of “Pinterest and Feminism” argues that Pinterest is giving women what they want, which is the whole point. In the same way that Nigella Lawson cooks out of a desire for solitary pleasure, women are using Pinterest as a form of leisure time entertainment that is separate from work time. The creation of virtual cookbooks on Pinterest is a pastime that women engage in selfishly. It is an escape from their domestic responsibilities because it is something that they do for themselves and no one else. Amelia McDonnell acknowledges that she wants to spend time drooling over a recipe that she intends to make on the weekend and invites Odell to share the pork chops she made—the recipe for which she found on Pinterest and cooked for herself because she is single and happy. Her satirical response to Odell reinforces the notion of self-satisfaction and independence that accompanies cooking. Like Nigella Lawson, who promotes a fantasy of domestic pleasure on her own terms, both women renegotiate what it means to be a public woman disseminating cooking practices (Lawson, Food Legacies). Antonia Hayes rejects Odell’s premise that Pinterest is killing feminism and accuses the latter of perpetuating the sexism that continues to pervade society. Hayes acknowledges that you can have an interest in cooking and interior design, whilst simultaneously espousing beliefs in equal rights for women: “Kitchen porn and feminism aren’t mutually exclusive” (online). As a self-proclaimed feminist and Pinterest user, with an ever-expanding virtual cookbook, it is easy to resent Odell’s remark that pinning photos of cauliflower crust pizzas is setting the women’s movement back decades. As Hayes asserts “it’s just as damaging to tell women that they’re killing feminism by liking pretty pictures as it is to tell them that in order to be feminine you must dress, act, look a certain way. It’s the same constructed view albeit from a different angle” (online). Self-proclaimed feminists like Odell, who tell us that “only a certain kind of woman (the Pinterest-rejecting, domesticity hater) deserves equal rights and respect” (online), are actually perpetuating the sexism that they are trying to combat. In so doing, they pose questions about notions of agency, choice and desire, which speak to longstanding debates and dilemmas in feminist theory.Since when did it become anti-feminist to like something that is visually pleasing? I have a Pinterest account and I am a feminist. However, if recent criticism on Pinterest is to be believed, these two things are antithetical. If traditional femininity posits that women should be passive, submissive, and silent, then the very nature of Pinterest, which requires the user to actively choose, post, and share images with others, is the very antithesis of these traits. Pinterest users, who create virtual cookbooks out of a desire to please the self, irrespective of any domestic obligations, are active, dominant and communicative. Women are choosing to publish cookbooks in their leisure time, which stands in direct to contrast to the productive demands of work time. Pinterest, a platform renowned for its capacity to render even the most productive individuals into serial procrastinators and time wasters, is the epitome of a leisure time activity. Rather than cooking for their husbands and children, as is their “heaven-appointed mission,” according to Flora Pell, women are scrolling through pins, creating a virtual cookbook of the culinary delights that they will make for themselves to enjoy.ReferencesAshley, Bob, Joanne Hollows, Steve Jones, and Ben Taylor. Food and Cultural Studies. London and New York: Routledge, 2004. Charles, Nickie, and Marrion Kerr. Women, Food and Families: Power, Status, Love, Anger. Manchester: Manchester UP, 1988. DeVault, Marjorie. Feeding the Family: The Social Organisation of Caring as Gendered Work. Chicago: Chicago UP, 1994. Hayes, Antonio. “Pinterest and the Modern Feminist.” 2012. 5 Apr. 2013 ‹http://www.stuff.co.nz/life-style/life/7803000/Pinterest-and-the-modern-feminist› Hollows, Joanne. “Feeling Like a Domestic Goddess: Post-feminism and Cooking.” European Journal of Cultural Studies 6.2 (2003): 179–202. Jurgenson, Nathan. “Pinterest and Feminism.” The Society Pages. 5 Mar. 2012. 25 Mar. 2013 ‹http://thesocietypages.org/cyborgology/2012/03/05/pinterest-and-feminism› Lawson, Jenny. “Disturbing Objects: Making, Eating and Watching Food in Popular Culture And Performance Practice.” Platform 3.2 (2008): 79–99. Lawson, Jenny. “Food Legacies: Playing the Culinary Feminine.” Women and Performance: A Journal of Feminist Theory 21.3 (2011): 337–66. Lawson, Nigella. How to Be a Domestic Goddess: Baking and the Art of Comfort Cooking. New York: Hyperion, 2001. Lawson, Nigella Feast: Food to Celebrate Life. London: Chatto & Windus, 2006. Lerner, Gerda. The Creation of Patriarchy. London: Oxford UP, 1986. McDonnell, Amelia. “The Soapbox: Oh Please, Pinterest Isn’t ‘Killing’ Feminism.” 2 Oct. 2012. 28 Mar. 2013 ‹http://www.thefrisky.com/2012-10-02/the-soapbox-oh-please-pinterest-isnt-killing-feminism› Murcott, Anne. It’s A Pleasure To Cook For Him: Food, Mealtimes and Gender In Some South Wales Households. London: Heinemann, 1983. Nathanson, Elizabeth. “As Easy As Pie: Cooking Shows, Domestic Efficiency and Postfeminist Temporality.” Television and New Media 10.4 (2009): 311–30. Odell, Amy. “How Pinterest is Killing Feminism.” 2012. 19 Mar. 2013 ‹http://www.buzzfeed.com/amyodell/how-pinterest-is-killing-feminism›. Oliver, Jamie. Jamie's 30-Minute Meals. London: Michael Joseph, 2010. ---. Jamie’s 15-Minute Meals. London: Michael Joseph, 2012. Theophano, Janet. Eat My Words: Reading Women’s Lives Through the Cookbooks They Wrote. New York: Palgrave, 2002. Wessell, Adele, and Wishart, Alison. “Recipes for Reading Culinary Heritage: Flora Pell and Her Cookery Book.” reCollections 1.5 (2010): 1–19. Wessell, Adele, and Brien, Donna. “Australian Cookbooks For Young Readers: from Flora Pell to Junior Masterchef.” The International Journal for the Practice and Theories of Writing for Children and Children’s Literature 3.1 (2011): 76–90.
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15

"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 144, no. 8 (2003): 3712–14. http://dx.doi.org/10.1210/endo.144.8.9999.

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Abstract:
Abstract Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to over 9,000 cases of formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. Researchers can search an online database to determine whether the resource specimens and data meet their needs. Contact CBCTR’s Web site at: http://www-cbctr.ims.nci.nih.gov, or Ms. Sherrill Long, Information Management Services, Inc., (301) 984-3445; e-mail: longs@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide researchers with access to paraffin-embedded and frozen prostate cancer tissues with associated clinical and outcome data. The collection is particularly useful for validation studies of diagnostic and prognostic markers. Questions about the resource should be directed to ASK-CPCTR-L@LIST.NIH.GOV. Additional information can be obtained from CPCTR’s Web site at http://www.prostatetissues.org, or by contacting Ms. Sherrill Long, Information Management Services, Inc., (301) 984-3445; e-mail: longs@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/), or Dr. Jodi Black, (301) 402-6293; e-mail: jb377x@nih.gov. NCI - Breast, Ovarian, and Colorectal Cancer Family Registries (CFRs) The Cancer Family Registries (CFRs) include two international registries: the Cancer Family Registry for Breast Cancer Studies (Breast CFR) and the Cancer Family Registry for Colorectal Cancer Studies (Colon CFR). The Breast CFR provides family history information, biological specimens, and epidemiologic and clinical data from clinic-based and population-based families at risk for breast and ovarian cancers. The Breast CFR infrastructure is particularly suited to support interdisciplinary and translational breast cancer research. Similarly, the Colon CFR collection includes family history information, epidemiologic and clinical data, and related biological specimens from individuals with colorectal cancer and their families. The colon CFR is a resource for population- and clinic-based translational research in the genetic epidemiology of colorectal cancer. For information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/cfr.html) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contractsperiodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Type I Diabetes Clinical Trials Program, NIDDK, 6707 Democracy Blvd., Room 691, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20814-9692. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at: www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain; cardiovascular system; endocrine system; eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Ms. Sally Strickler at NDRI, 1880 John F. Kennedy Boulevard, 6th Floor, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 227; fax: (215) 557-7154; e-mail: sstrickler@ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Richard A. Knazek, M.D., Division of Clinical Research, NCRR, NIH, 6705 Rockledge Drive, Bethesda, MD 20892. Phone (301) 435-0790; fax (301) 480-3661; e-mail: richardk@ncrr.nih.gov. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/7 and consists of 3302 African-American, Caucasian, Chinese-American, Hispanic, and Japanese-American women. The SWAN Repository contains blood and urine specimens from each study participant’s annual visit, at which time medical and health history, psychosocial measures, biological measures, and anthropometric data are also collected. In addition, a subset of participants provide urine samples over the length of one menstrual cycle each year. All of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. A DNA sample repository for SWAN is in development. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: American Type Culture Collection, National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nih.gov/nia/research/rodent.htm or contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs)* are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from Jerry A. Robinson, Ph.D., Director, National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: JerryR@ncrr.nih.gov. *The National Primate Research Centers were formerly called Regional Primate Research Centers. The name was changed in April 2002 to reflect the expanded role of the centers. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 496-0181; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Obesity, Diabetes and Aging Animal Resource (ODAAR) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of Maryland. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extends as far back as 15 years. This unique resource is available for collaborative studies. ODAAR has a significant amount of stored tissue collected at necropsy and stored blood collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODAAR colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity and Diabetes Research Center, University of Maryland, 10 South Pine St., Baltimore, MD 21201-1192, Phone: (410) 706-3168; fax: (410) 706-7540; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, and herpes-virus. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Rubin, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site: http://www.ngvl.org/. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 80 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division of Clinical Research, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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16

"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 144, no. 9 (2003): 4215–17. http://dx.doi.org/10.1210/endo.144.9.9999.

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Abstract:
Abstract Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to over 9,000 cases of formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. Researchers can search an online database to determine whether the resource specimens and data meet their needs. Contact CBCTR’s Web site at: http://www-cbctr.ims.nci.nih.gov, or Ms. Sherrill Long, Information Management Services, Inc., (301) 984-3445; e-mail: longs@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide researchers with access to paraffin-embedded and frozen prostate cancer tissues with associated clinical and outcome data. The collection is particularly useful for validation studies of diagnostic and prognostic markers. Questions about the resource should be directed to ASK-CPCTR-L@LIST.NIH.GOV. Additional information can be obtained from CPCTR’s Web site at http://www.prostatetissues.org, or by contacting Ms. Sherrill Long, Information Management Services, Inc., (301) 984-3445; e-mail: longs@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/), or Dr. Jodi Black, (301) 402-6293; e-mail: jb377x@nih.gov. NCI - Breast, Ovarian, and Colorectal Cancer Family Registries (CFRs) The Cancer Family Registries (CFRs) include two international registries: the Cancer Family Registry for Breast Cancer Studies (Breast CFR) and the Cancer Family Registry for Colorectal Cancer Studies (Colon CFR). The Breast CFR provides family history information, biological specimens, and epidemiologic and clinical data from clinic-based and population-based families at risk for breast and ovarian cancers. The Breast CFR infrastructure is particularly suited to support interdisciplinary and translational breast cancer research. Similarly, the Colon CFR collection includes family history information, epidemiologic and clinical data, and related biological specimens from individuals with colorectal cancer and their families. The colon CFR is a resource for population- and clinic-based translational research in the genetic epidemiology of colorectal cancer. For information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/cfr.html) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Type I Diabetes Clinical Trials Program, NIDDK, 6707 Democracy Blvd., Room 691, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20814-9692. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at: www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain; cardiovascular system; endocrine system; eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Ms. Sally Strickler at NDRI, 1880 John F. Kennedy Boulevard, 6th Floor, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 227; fax: (215) 557-7154; e-mail: sstrickler@ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Richard A. Knazek, M.D., Division of Clinical Research, NCRR, NIH, 6705 Rockledge Drive, Bethesda, MD 20892. Phone (301) 435-0790; fax (301) 480-3661; e-mail: richardk@ncrr.nih.gov. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/7 and consists of 3302 African-American, Caucasian, Chinese-American, Hispanic, and Japanese-American women.144.9.4215http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: American Type Culture Collection, National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nih.gov/nia/research/rodent.htm or contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs)* are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from Jerry A. Robinson, Ph.D., Director, National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: JerryR@ncrr.nih.gov. *The National Primate Research Centers were formerly called Regional Primate Research Centers. The name was changed in April 2002 to reflect the expanded role of the centers. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 496-0181; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Obesity, Diabetes and Aging Animal Resource (ODAAR) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of Maryland. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extends as far back as 15 years. This unique resource is available for collaborative studies. ODAAR has a significant amount of stored tissue collected at necropsy and stored blood collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODAAR colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity and Diabetes Research Center, University of Maryland, 10 South Pine St., Baltimore, MD 21201-1192, Phone: (410) 706-3168; fax: (410) 706-7540; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, and herpes-virus. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Rubin, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site: http://www.ngvl.org/. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 80 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division of Clinical Research, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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17

Goodall, Jane. "Looking Glass Worlds: The Queen and the Mirror." M/C Journal 19, no. 4 (2016). http://dx.doi.org/10.5204/mcj.1141.

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Abstract:
As Lewis Carroll’s Alice comes to the end of her journey through the looking glass world, she has also come to the end of her patience with its strange power games and arbitrations. At every stage of the adventure, she has encountered someone who wants to dictate rules and protocols, and a lesson on table manners from the Red Queen finally triggers rebellion. “I can’t stand this any more,” Alice cries, as she seizes the tablecloth and hurls the entire setting into chaos (279). Then, catching hold of the Red Queen, she gives her a good shaking, until the rigid contours of the imperious figure become fuzzy and soft. At this point, the hold of the dream dissolves and Alice, awakening on the other side of the mirror, realises she is shaking the kitten. Queens have long been associated with ideas of transformation. As Alice is duly advised when she first looks out across the chequered landscape of the looking glass world, the rules of chess decree that a pawn may become a queen if she makes it to the other side. The transformation of pawn to queen is in accord with the fairy tale convention of the unspoiled country girl who wins the heart of a prince and is crowned as his bride. This works in a dual register: on one level, it is a story of social elevation, from the lowest to the highest rank; on another, it is a magical transition, as some agent of fortune intervenes to alter the determinations of the social world. But fairy tales also present us with the antithesis and adversary of the fortune-blessed princess, in the figure of the tyrant queen who works magic to shape destiny to her own ends. The Queen and the mirror converge in the cultural imaginary, working transformations that disrupt the order of nature, invert socio-political hierarchies, and flout the laws of destiny. In “Snow White,” the powers of the wicked queen are mediated by the looking glass, which reflects and affirms her own image while also serving as a panopticon, keep the entire realm under surveillance, to pick up any signs of threat to her pre-eminence. All this turbulence in the order of things lets loose a chaotic phantasmagoria that is prime material for film and animation. Two major film versions of “Snow White” have been released in the past few years—Mirror Mirror (2012) and Snow White and the Huntsman (2012)—while Tim Burton’s animated 3D rendition of Alice in Wonderland was released in 2010. Alice through the Looking Glass (2016) and The Huntsman: Winter’s War, the 2016 prequel to Snow White and the Huntsman, continue the experiment with state-of-the-art-techniques in 3D animation and computer-generated imaging to push the visual boundaries of fantasy. Perhaps this escalating extravagance in the creation of fantasy worlds is another manifestation of the ancient lore and law of sorcery: that the magic of transformation always runs out of control, because it disrupts the all-encompassing design of an ordered world. This principle is expressed with poetic succinctness in Ursula Le Guin’s classic story A Wizard of Earthsea, when the Master Changer issues a warning to his most gifted student: But you must not change one thing, one pebble, one grain of sand, until you know what good and evil will follow on that act. The world is in balance, in Equilibrium. A wizard's power of Changing and Summoning can shake the balance of the world. It is dangerous, that power. (48)In Le Guin’s story, transformation is only dangerous if it involves material change; illusions of all kinds are ultimately harmless because they are impermanent.Illusions mediated by the mirror, however, blur the distinction Le Guin is making, for the mirror image supposedly reflects a real world. And it holds the seductive power of a projected narcissism. Seeing what we wish for is an experience that can hold us captive in a way that changes human nature, and so leads to dangerous acts with material consequences. The queen in the mirror becomes the wicked queen because she converts the world into her image, and in traditions of animation going back to Disney’s original Snow White (1937) the mirror is itself an animate being, with a spirit whose own determinations become paramount. Though there are exceptions in the annals of fairy story, powers of transformation are typically dark powers, turbulent and radically elicit. When they are mediated through the agency of the mirror, they are also the powers of narcissism and autocracy. Through a Glass DarklyIn her classic cultural history of the mirror, Sabine Melchior-Bonnet tracks a duality in the traditions of symbolism associated with it. This duality is already evident in Biblical allusions to the mirror, with references to the Bible itself as “the unstained mirror” (Proverbs 7.27) counterpointed by images of the mortal condition as one of seeing “through a glass darkly” (1 Corinthians 13.12).The first of these metaphoric conventions celebrates the crystalline purity of a reflecting surface that reveals the spiritual identity beneath the outward form of the human image. The church fathers drew on Plotinus to evoke “a whole metaphysics of light and reflection in which the visible world is the image of the invisible,” and taught that “humans become mirrors when they cleanse their souls (Melchior-Bonnet 109–10). Against such invocations of the mirror as an intermediary for the radiating presence of the divine in the mortal world, there arises an antithetical narrative, in which it is portrayed as distorting, stained, and clouded, and therefore an instrument of delusion. Narcissus becomes the prototype of the human subject led astray by the image itself, divorced from material reality. What was the mirror if not a trickster? Jean Delumeau poses this question in a preface to Melchior-Bonnet’s book (xi).Through the centuries, as Melchior-Bonnet’s study shows, these two strands are interwoven in the cultural imaginary, sometimes fused, and sometimes torn asunder. With Venetian advances in the techniques and technologies of mirror production in the late Renaissance, the mirror gained special status as a possession of pre-eminent beauty and craftsmanship, a means by which the rich and powerful could reflect back to themselves both the self-image they wanted to see, and the world in the background as a shimmering personal aura. This was an attempt to harness the numinous influence of the divinely radiant mirror in order to enhance the superiority of leading aristocrats. By the mid seventeenth century, the mirror had become an essential accessory to the royal presence. Queen Anne of Austria staged a Queen’s Ball in 1633, in a hall surrounded by mirrors and tapestries. The large, finely polished mirror panels required for this kind of display were made exclusively by craftsmen at Murano, in a process that, with its huge furnaces, its alternating phases of melting and solidifying, its mysterious applications of mercury and silver, seemed to belong to the transformational arts of alchemy. In 1664, Louis XIV began to steal unique craftsmen from Murano and bring them to France, to set up the Royal Glass and Mirror Company whose culminating achievement was the Hall of Mirrors at Versailles.The looking glass world of the palace was an arena in which courtiers and visitors engaged in the high-stakes challenge of self-fashioning. Costume, attitude, and manners were the passport to advancement. To cut a figure at court was to create an identity with national and sometimes international currency. It was through the art of self-fashioning that the many princesses of Europe, and many more young women of title and hereditary distinction, competed for the very few positions as consort to the heir of a royal house. A man might be born to be king, but a woman had to become a queen.So the girl who would be queen looks in the mirror to assess her chances. If her face is her fortune, what might she be? A deep relationship with the mirror may serve to enhance her beauty and enable her to realise her wish, but like all magical agents, the mirror also betrays anyone with the hubris to believe they are in control of it. In the Grimm’s story of “Snow White,” the Queen practises the ancient art of scrying, looking into a reflective surface to conjure images of things distant in time and place. But although the mirror affords her the seer’s visionary capacity to tell what will be, it does not give her the power to control the patterns of destiny. Driven to attempt such control, she must find other magic in order to work the changes she desires, and so she experiments with spells of self-transformation. Here the doubleness of the mirror plays out across every plane of human perception: visual, ethical, metaphysical, psychological. A dynamic of inherent contradiction betrays the figure who tries to engage the mirror as a servant. Disney’s original 1937 cartoon shows the vain Queen brewing an alchemical potion that changes her into the very opposite of all she has sought to become: an ugly, ill-dressed, and impoverished old woman. This is the figure who can win and betray trust from the unspoiled princess to whom the arts of self-fashioning are unknown. In Tarsem Singh’s film Mirror Mirror, the Queen actually has two mirrors. One is a large crystal egg that reflects back a phantasmagoria of palace scenes; the other, installed in a primitive hut on an island across the lake, is a simple looking glass that shows her as she really is. Snow White and the Huntsman portrays the mirror as a golden apparition, cloaked and faceless, that materialises from within the frame to stand before her. This is not her reflection, but with every encounter, she takes on more of its dark energies, until, in another kind of reversal, she becomes its image and agent in the wider world. As Ursula Le Guin’s sage teaches the young magician, magic has its secret economies. You pay for what you get, and the changes wrought will come back at you in ways you would never have foreseen. The practice of scrying inevitably leads the would-be clairvoyant into deeper levels of obscurity, until the whole world turns against the seer in a sequence of manifestations entirely contrary to his or her framework of expectation. Ultimately, the lesson of the mirror is that living in obscurity is a defining aspect of the human condition. Jorge Luis Borges, the blind writer whose work exhibits a life-long obsession with mirrors, surveys a range of interpretations and speculations surrounding the phrase “through a glass darkly,” and quotes this statement from Leon Bloy: “There is no human being on earth capable of declaring with certitude who he is. No one knows what he has come into this world to do . . . or what his real name is, his enduring Name in the register of Light” (212).The mirror will never really tell you who you are. Indeed, its effects may be quite the contrary, as Alice discovers when, within a couple of moves on the looking glass chessboard, she finds herself entering the wood of no names. Throughout her adventures she is repeatedly interrogated about who or what she is, and can give no satisfactory answer. The looking glass has turned her into an estranged creature, as bizarre a species as any of those she encounters in its landscapes.Furies“The furies are at home in the mirror,” wrote R. S. Thomas in his poem “Reflections” (265). They are the human image gone haywire, the frightening other of what we hope to see in our reflection. As the mirror is joined by technologies of the moving image in twentieth-century evolutions of the myth, the furies have been given a new lease of life on the cinema screen. In Disney’s 1937 cartoon of Snow White, the mirror itself has the face of a fury, which emerges from a pool of blackness like a death’s head before bringing the Queen’s own face into focus. As its vision comes into conflict with hers, threatening the dissolution of the world over which she presides, the mirror’s face erupts into fire.Computer-generated imaging enables an expansive response to the challenges of visualisation associated with the original furies of classical mythology. The Erinyes are unstable forms, arising from liquid (blood) to become semi-materialised in human guise, always ready to disintegrate again. They are the original undead, hovering between mortal embodiment and cadaverous decay. Tearing across the landscape as a flock of birds, a swarm of insects, or a mass of storm clouds, they gather into themselves tremendous energies of speed and motion. The 2012 film Snow White and the Huntsman, directed by Rupert Sanders, gives us the strongest contemporary realisation of the archaic fury. Queen Ravenna, played by Charlize Theron, is a virtuoso of the macabre, costumed in a range of metallic exoskeletons and a cloak of raven’s feathers, with a raised collar that forms two great black wings either side of her head. Powers of dematerialisation and rematerialisation are central to her repertoire. She undergoes spectacular metamorphosis into a mass of shrieking birds; from the walls around her she conjures phantom soldiers that splinter into shards of black crystal when struck by enemy swords. As she dies at the foot of the steps leading up to the great golden disc of her mirror, her face rapidly takes on the great age she has disguised by vampiric practices.Helena Bonham Carter as the Red Queen in Burton’s Alice in Wonderland is a figure midway between Disney’s fairy tale spectre and the fully cinematic register of Theron’s Ravenna. Bonham Carter’s Queen, with her accentuated head and pantomime mask of a face, retains the boundaries of form. She also presides over a court whose visual structures express the rigidities of a tyrannical regime. Thus she is no shape-shifter, but energies of the fury are expressed in her voice, which rings out across the presence chamber of the palace and reverberates throughout the kingdom with its calls for blood. Alice through the Looking Glass, James Bobin’s 2016 sequel, puts her at the centre of a vast destructive force field. Alice passes through the mirror to encounter the Lord of Time, whose eternal rule must be broken in order to break the power of the murdering Queen; Alice then opens a door and tumbles in free-fall out into nothingness. The place where she lands is a world not of daydream but of nightmare, where everything will soon be on fire, as the two sides in the chess game advance towards each other for the last battle. This inflation of the Red Queen’s macabre aura and impact is quite contrary to what Lewis Carroll had in mind for his own sequel. In some notes about the stage adaptation of the Alice stories, he makes a painstaking distinction between the characters of the queen in his two stories.I pictured to myself the Queen of Hearts as a sort of embodiment of ungovernable passion—a blind and aimless Fury. The Red Queen I pictured as a Fury, but of another type; her passion must be cold and calm—she must be formal and strict, yet not unkindly; pedantic to the 10th degree, the concentrated essence of governesses. (86)Yet there is clearly a temptation to erase this distinction in dramatisations of Alice’s adventures. Perhaps the Red Queen as a ‘not unkindly’ governess is too restrained a persona for the psychodynamic mythos surrounding the queen in the mirror. The image itself demands more than Carroll wants to accord, and the original Tenniel illustrations give a distinctly sinister look to the stern chess queen. In their very first encounter, the Red Queen contradicts every observation Alice makes, confounds the child’s sensory orientation by inverting the rules of time and motion, and assigns her the role of pawn in the game. Kafka or Orwell would not have been at all relaxed about an authority figure who practises mind control, language management, and identity reassignment. But here Carroll offers a brilliant modernisation of the fairy story tradition. Under the governance of the autocratic queen, wonderland and the looking glass world are places in which the laws of science, logic, and language are overturned, to be replaced by the rules of the queen’s games: cards and croquet in the wonderland, and chess in the looking glass world. Alice, as a well-schooled Victorian child, knows something of these games. She has enough common sense to be aware of how the laws of gravity and time and motion are supposed to work, and if she boasts of being able to believe six impossible things before breakfast, this signifies that she has enough logic to understand the limits of possibility. She would also have been taught about species and varieties and encouraged to make her own collections of natural forms. But the anarchy of the queen’s world extends into the domain of biology: species of all kinds can talk, bodies dissolve or change size, and transmutations occur instantaneously. Thus the world-warping energies of the Erinyes are re-imagined in an absurdist’s challenge to the scientist’s universe and the logician’s mentality.Carroll’s instinct to tame the furies is in accord with the overall tone and milieu of his stories, which are works of quirky charm rather than tales of terror, but his two queens are threatening enough to enable him to build the narrative to a dramatic climax. For film-makers and animators, though, it is the queen who provides the dramatic energy and presence. There is an over-riding temptation to let loose the pandemonium of the original Erinyes, exploiting their visual terror and their classical association with metamorphosis. FashioningThere is some sociological background to the coupling of the queen and the mirror in fairy story. In reality, the mirror might assist an aspiring princess to become queen by enchanting the prince who was heir to the throne, but what was the role of the looking glass once she was crowned? Historically, the self-imaging of the queen has intense and nervous resonances, and these can be traced back to Elizabeth I, whose elaborate persona was fraught with newly interpreted symbolism. Her portraits were her mirrors, and they reflect a figure in whom the qualities of radiance associated with divinity were transferred to the human monarch. Elizabeth developed the art of dressing herself in wearable light. If she lacked for a halo, she made up for it with the extravagant radiata of her ruffs and the wreaths of pearls around her head. Pearls in mediaeval poetry carried the mystique of a luminous microcosm, but they were also mirrors in themselves, each one a miniature reflecting globe. The Ditchely portrait of 1592 shows her standing as a colossus between heaven and earth, with the changing planetary light cycle as background. This is a queen who rules the world through the mediation of her own created image. It is an inevitable step from here to a corresponding intervention in the arrangement of the world at large, which involves the armies and armadas that form the backdrop to her other great portraits. And on the home front, a regime of terror focused on regular public decapitations and other grisly executions completes the strategy to remaking the world according to her will. Renowned costume designer Eiko Ishioka created an aesthetic for Mirror Mirror that combines elements of court fashion from the Elizabethan era and the French ancien régime, with allusions to Versailles. Formality and mannerism are the keynotes for the palace scenes. Julia Roberts as the Queen wears a succession of vast dresses that are in defiance of human scale and proportion. Their width at the hem is twice her height, and 100,000 Svarovski crystals were used for their embellishment. For the masked ball scene, she makes her entry as a scarlet peacock with a high arching ruff of pure white feathers. She amuses herself by arranging her courtiers as pieces on a chess-board. So stiffly attired they can barely move more than a square at a time, and with hats surmounted by precariously balanced ships, they are a mock armada from which the Queen may sink individual vessels on a whim, by ordering a fatal move. Snow White and the Huntsman takes a very different approach to extreme fashioning. Designer Colleen Atwood suggests the shape-shifter in the Queen’s costumes, incorporating materials evoking a range of species: reptile scales, fluorescent beetle wings from Thailand, and miniature bird skulls. There is an obvious homage here to the great fashion designer Alexander McQueen, whose hallmark was a fascination with the organic costuming of creatures in feathers, fur, wool, scales, shells, and fronds. Birds were everywhere in McQueen’s work. His 2006 show Widows of Culloden featured a range of headdresses that made the models look as if they had just walked through a flock of birds in full flight. The creatures were perched on their heads with outstretched wings askance across the models’ faces, obscuring their field of vision. As avatars from the spirit realm, birds are emblems of otherness, and associated with metempsychosis, the transmigration of souls. These resonances give a potent mythological aura to Theron’s Queen of the dark arts.Mirror Mirror and Snow White and the Huntsman accordingly present strikingly contrasted versions of self-fashioning. In Mirror Mirror we have an approach driven by traditions of aristocratic narcissism and courtly persona, in which form is both rigid and extreme. The Queen herself, far from being a shape-shifter, is a prisoner of the massive and rigid architecture that is her costume. Snow White and the Huntsman gives us a more profoundly magical interpretation, where form is radically unstable, infused with strange energies that may at any moment manifest themselves through violent transformation.Atwood was also costume designer for Burton’s Alice in Wonderland, where an invented framing story foregrounds the issue of fashioning as social control. Alice in this version is a young woman, being led by her mother to a garden party where a staged marriage proposal is to take place. Alice, as the social underling in the match, is simply expected to accept the honour. Instead, she escapes the scene and disappears down a rabbit hole to return to the wonderland of her childhood. In a nice comedic touch, her episodes of shrinking and growing involve an embarrassing separation from her clothes, so divesting her also of the demure image of the Victorian maiden. Atwood provides her with a range of fantasy party dresses that express the free spirit of a world that is her refuge from adult conformity.Alice gets to escape the straitjacket of social formation in Carroll’s original stories by overthrowing the queen’s game, and with it her micro-management of image and behaviour. There are other respects, though, in which Alice’s adventures are a form of social and moral fashioning. Her opening reprimand to the kitten includes some telling details about her own propensities. She once frightened a deaf old nurse by shouting suddenly in her ear, “Do let’s pretend that I’m a hungry hyaena and you’re a bone!” (147). Playing kings and queens is one of little Alice’s favourite games, and there is more than a touch of the Red Queen in the way she bosses and manages the kitten. It is easy to laud her impertinence in the face of the tyrannical characters she meets in her fantasies, but does she risk becoming just like them?As a story of moral self-fashioning, Alice through the Looking Glass cuts both ways. It is at once a critique of the Victorian social straitjacket, and a child’s fable about self-improvement. To be accorded the status of queen and with it the freedom of the board is also to be invested with responsibilities. If the human girl is the queen of species, how will she measure up? The published version of the story excludes an episode known to editors as “The Wasp in a Wig,” an encounter that takes place as Alice reaches the last ditch before the square upon which she will be crowned. She is about to jump the stream when she hears a sigh from woods behind her. Someone here is very unhappy, and she reasons with herself about whether there is any point in stopping to help. Once she has made the leap, there will be no going back, but she is reluctant to delay the move, as she is “very anxious to be a Queen” (309). The sigh comes from an aged creature in the shape of a wasp, who is sitting in the cold wind, grumbling to himself. Her kind enquiries are greeted with a succession of waspish retorts, but she persists and does not leave until she has cheered him up. The few minutes devoted “to making the poor old creature comfortable,” she tells herself, have been well spent.Read in isolation, the episode is trite and interferes with the momentum of the story. Carroll abandoned it on the advice of his illustrator John Tenniel, who wrote to say it didn’t interest him in the least (297). There is interest of another kind in Carroll’s instinct to arrest Alice’s momentum at that critical stage, with what amounts to a small morality tale, but Tenniel’s instinct was surely right. The mirror as a social object is surrounded by traditions of self-fashioning that are governed by various modes of conformity: moral, aesthetic, political. Traditions of myth and fantasy allow wider imaginative scope for the role of the mirror, and by association, for inventive speculation about human transformation in a world prone to extraordinary upheavals. ReferencesBorges, Jorge Luis. “Mirrors of Enigma.” Labyrinths: Selected Stories and Other Writings. Eds. Donald A. Yates and James Irby. New York: New Directions, 2007. 209–12. Carroll, Lewis. Alice through the Looking Glass. In The Annotated Alice. Ed. Martin Gardner. London: Penguin, 2000.The King James Bible.Le Guin, Ursula. The Earthsea Quartet. London: Penguin, 2012.Melchior-Bonnet, Sabine. The Mirror: A History. Trans. Katherine H. Jewett. London: Routledge, 2014.Thomas, R.S. “Reflections.” No Truce with the Furies, Collected Later Poems 1988–2000. Hexham, Northumberland: Bloodaxe, 2011.
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"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 147, no. 4 (2006): 2063–66. http://dx.doi.org/10.1210/endo.147.4.9998.

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Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE AND BIOLOGIC SPECIMEN RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www. swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov
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"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 147, no. 6 (2006): 3153–56. http://dx.doi.org/10.1210/endo.147.6.9999.

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Abstract:
Abstract Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE AND BIOLOGIC SPECIMEN RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 148, no. 7 (2007): 3541–44. http://dx.doi.org/10.1210/endo.148.7.9999.

Full text
Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. Human Tissue and Biologic Specimen Resources NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www. swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. Human and Animal Cell and Biologic Reagent Resources NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. Animal Resources NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm.The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. Miscellaneous Resources NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 148, no. 9 (2007): 4523–26. http://dx.doi.org/10.1210/endo.148.9.9999.

Full text
Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. Human Tissue and Biologic Specimen Resources NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770;marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770;marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147;bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147;tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503;cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007;rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154;jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106;jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www. swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892;mfsowers@umich.edu. Human and Animal Cell and Biologic Reagent Resources NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432;parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. Animal Resources NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597;rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819;griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802;Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048;abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819;hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010;nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm.The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443;bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. Miscellaneous Resources NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518;lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790;haywarda@ncrr.nih.gov.
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"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 149, no. 3 (2008): 1423–26. http://dx.doi.org/10.1210/endo.149.3.9998.

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Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE AND BIOLOGIC SPECIMEN RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; email: marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; email: marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; email: bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; email: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; email: cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; email: rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; email: jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; email: jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www. swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; email: mfsowers@umich.edu. HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; email: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; email: rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; email: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; email: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; email: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; email: hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; email: nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; email: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; email: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; email: haywarda@ncrr.nih.gov.
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23

"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 149, no. 10 (2008): 5316–19. http://dx.doi.org/10.1210/endo.149.10.9998.

Full text
Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. Human Tissue and Biologic Specimen Resources NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770;marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770;marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147;bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147;tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503;cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007;rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154;jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106;jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892;mfsowers@umich.edu. Human and Animal Cell and Biologic Reagent Resources NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432;parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD:Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. Animal Resources NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597;rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819;griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802;Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048;abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819;hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010;nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443;bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. IN SILICO RESOURCES NIDDK, NHLBI, and NIEHS - Nuclear Receptor Signaling Atlas The Nuclear Receptor Signaling Atlas (NURSA) has created an in silico resource comprised of curated information about Nuclear Receptors, Coregulators, Ligands, and Downstream Targets. NURSA is sponsored by NIH and provides online access through a public webportal at www.NURSA.org. Ease of navigation through a series of molecule pages allows users to make queries about Nuclear Receptors, Coactivators and Corepressors. Additional information about nuclear receptor ligands is provided, as well as primary datasets relating to expression profiling of nuclear receptors, coregulators and downstream targets. The molecule pages are hyperlinked to data contained in external databases, including NCBI, KEGG, UniProt, and others, allowing for detailed data mining. In partnership with The Endocrine Society, NURSA and Molecular Endocrinology (http://mend.endojournals.org/) have reciprocal links designed to enhance publications in Molecular Endocrinology and the information available through the NURSA molecule pages. Links to additional relevant literature citations are from PubMed at the National Library of Medicine. Miscellaneous Resources NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518;lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790;haywarda@ncrr.nih.gov.
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24

"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 149, no. 11 (2008): 5898–901. http://dx.doi.org/10.1210/endo.149.11.9998.

Full text
Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE AND BIOLOGIC SPECIMEN RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigenRecombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. IN SILICO RESOURCES NIDDK, NHLBI, and NIEHS - Nuclear Receptor Signaling Atlas The Nuclear Receptor Signaling Atlas (NURSA) has created an in silico resource comprised of curated information about Nuclear Receptors, Coregulators, Ligands, and Downstream Targets. NURSA is sponsored by NIH and provides online access through a public webportal at www.NURSA.org. Ease of navigation through a series of molecule pages allows users to make queries about Nuclear Receptors, Coactivators and Corepressors. Additional information about nuclear receptor ligands is provided, as well as primary datasets relating to expression profiling of nuclear receptors, coregulators and downstream targets. The molecule pages are hyperlinked to data contained in external databases, including NCBI, KEGG, UniProt, and others, allowing for detailed data mining. In partnership with The Endocrine Society, NURSA and Molecular Endocrinology (http://mend.endojournals.org/) have reciprocal links designed to enhance publications in Molecular Endocrinology and the information available through the NURSA molecule pages. Links to additional relevant literature citations are from PubMed at the National Library of Medicine. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 149, no. 4 (2008): 2027–30. http://dx.doi.org/10.1210/endo.149.4.9997.

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Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. Human Tissue and Biologic Specimen Resources NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. Human and Animal Cell and Biologic Reagent Resources NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. In Silico Resources NIDDK, NHLBI, and NIEHS - Nuclear Receptor Signaling Atlas The Nuclear Receptor Signaling Atlas (NURSA) has created an in silico resource comprised of curated information about Nuclear Receptors, Coregulators, Ligands, and Downstream Targets. NURSA is sponsored by NIH and provides online access through a public webportal at www.NURSA.org. Ease of navigation through a series of molecule pages allows users to make queries about Nuclear Receptors, Coactivators and Corepressors. Additional information about nuclear receptor ligands is provided, as well as primary datasets relating to expression profiling of nuclear receptors, coregulators and downstream targets. The molecule pages are hyperlinked to data contained in external databases, including NCBI, KEGG, UniProt, and others, allowing for detailed data mining. In partnership with The Endocrine Society, NURSA and Molecular Endocrinology (http://mend.endojournals.org/) have reciprocal links designed to enhance publications in Molecular Endocrinology and the information available through the NURSA molecule pages. Links to additional relevant literature citations are from PubMed at the National Library of Medicine. Miscellaneous Resources NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 149, no. 5 (2008): 2688–91. http://dx.doi.org/10.1210/endo.149.5.9999.

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Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. Human Tissue and Biologic Specimen Resources NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu Human and Animal Cell and Biologic Reagent Resources NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigenRecombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. Animal Resources NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. In Silico Resources NIDDK, NHLBI, and NIEHS - Nuclear Receptor Signaling Atlas The Nuclear Receptor Signaling Atlas (NURSA) has created an in silico resource comprised of curated information about Nuclear Receptors, Coregulators, Ligands, and Downstream Targets. NURSA is sponsored by NIH and provides online access through a public webportal at www.NURSA.org. Ease of navigation through a series of molecule pages allows users to make queries about Nuclear Receptors, Coactivators and Corepressors. Additional information about nuclear receptor ligands is provided, as well as primary datasets relating to expression profiling of nuclear receptors, coregulators and downstream targets. The molecule pages are hyperlinked to data contained in external databases, including NCBI, KEGG, UniProt, and others, allowing for detailed data mining. In partnership with The Endocrine Society, NURSA and Molecular Endocrinology (http://mend.endojournals.org/) have reciprocal links designed to enhance publications in Molecular Endocrinology and the information available through the NURSA molecule pages. Links to additional relevant literature citations are from PubMed at the National Library of Medicine. Miscellaneous Resources NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov
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27

"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 149, no. 7 (2008): 3753–56. http://dx.doi.org/10.1210/endo.149.7.9999.

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Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE AND BIOLOGIC SPECIMEN RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www. swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigenRecombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. IN SILICO RESOURCES NIDDK, NHLBI, and NIEHS - Nuclear Receptor Signaling Atlas The Nuclear Receptor Signaling Atlas (NURSA) has created an in silico resource comprised of curated information about Nuclear Receptors, Coregulators, Ligands, and Downstream Targets. NURSA is sponsored by NIH and provides online access through a public webportal at www.NURSA.org. Ease of navigation through a series of molecule pages allows users to make queries about Nuclear Receptors, Coactivators and Corepressors. Additional information about nuclear receptor ligands is provided, as well as primary datasets relating to expression profiling of nuclear receptors, coregulators and downstream targets. The molecule pages are hyperlinked to data contained in external databases, including NCBI, KEGG, UniProt, and others, allowing for detailed data mining. In partnership with The Endocrine Society, NURSA and Molecular Endocrinology (http://mend.endojournals.org/) have reciprocal links designed to enhance publications in Molecular Endocrinology and the information available through the NURSA molecule pages. Links to additional relevant literature citations are from PubMed at the National Library of Medicine. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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28

"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 149, no. 8 (2008): 4244–47. http://dx.doi.org/10.1210/endo.149.8.9996.

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Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE AND BIOLOGIC SPECIMEN RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.htm, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. IN SILICO RESOURCES NIDDK, NHLBI, and NIEHS - Nuclear Receptor Signaling Atlas The Nuclear Receptor Signaling Atlas (NURSA) has created an in silico resource comprised of curated information about Nuclear Receptors, Coregulators, Ligands, and Downstream Targets. NURSA is sponsored by NIH and provides online access through a public webportal at www.NURSA.org. Ease of navigation through a series of molecule pages allows users to make queries about Nuclear Receptors, Coactivators and Corepressors. Additional information about nuclear receptor ligands is provided, as well as primary datasets relating to expression profiling of nuclear receptors, coregulators and downstream targets. The molecule pages are hyperlinked to data contained in external databases, including NCBI, KEGG, UniProt, and others, allowing for detailed data mining. In partnership with The Endocrine Society, NURSA and Molecular Endocrinology (http://mend.endojournals.org/) have reciprocal links designed to enhance publications in Molecular Endocrinology and the information available through the NURSA molecule pages. Links to additional relevant literature citations are from PubMed at the National Library of Medicine. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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"Endocrine-Related Resources from the National Institutes of Health." Endocrinology 149, no. 9 (2008): 4755–58. http://dx.doi.org/10.1210/endo.149.9.9999.

Full text
Abstract:
Resources currently available to the scientific community that may be of interest for endocrinology research are described briefly here. More information is available through The Endocrine Society Home Page (http://www.endo-society.org) or the information provided below. HUMAN TISSUE AND BIOLOGIC SPECIMEN RESOURCES NCI - Cooperative Human Tissue Network (CHTN) The NCI Cooperative Human Tissue Network (CHTN) provides normal, benign, precancerous, and cancerous human tissue to the scientific community for biomedical research. Specimens are collected according to the investigator’s individual protocol. Information provided with the specimens includes routine histopathologic and demographic data. The CHTN can also provide a variety of tissue microarrays. Contact the CHTN Web site at http://www-chtn.ims.nci.nih.gov, or 1-866-GO2-CHTN (1-866-462-2486). NCI - Cooperative Breast Cancer Tissue Resource (CBCTR) The NCI Cooperative Breast Cancer Tissue Resource (CBCTR) can provide researchers with access to formalin-fixed, paraffin-embedded primary breast cancer specimens, with associated pathologic, clinical, and outcome data. All specimens are evaluated for pathologic diagnosis by CBCTR pathologists using standard diagnostic criteria. The collection is particularly well suited for validation studies of diagnostic and prognostic markers. The CBCTR also makes available breast cancer tissue microarrays designed by NCI statisticians to provide high statistical power for studies of stage-specific markers of breast cancer. Contact CBCTR’s Web site at http://cbctr.nci.nih.gov, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - Cooperative Prostate Cancer Tissue Resource (CPCTR) The NCI Cooperative Prostate Cancer Tissue Resource (CPCTR) can provide access to over 4,000 cases of formalin-fixed, paraffin-embedded primary prostate cancer specimens, with associated pathology and clinical data. Fresh-frozen tissue is also available with limited clinical follow-up information. In addition, slides from prostate cancer tissue microarrays with associated pathology and clinical data are now available. Contact the CPCTR Web site at http://www.prostatetissues.org, or contact Steve Marroulis at Information Management Services, Inc.: telephone: (301) 680-9770; e-mail: marrouliss@imsweb.com. NCI - AIDS and Cancer Specimen Resource (ACSR) The AIDS and Cancer Specimen Resource (ACSR) provides qualified researchers with tissue, cell, blood, and fluid specimens, as well as clinical data from patients with AIDS and cancer. The specimens and clinical data are available for research studies, particularly those that translate basic research findings to clinical application. Contact the ACSR Web site (http://acsr.ucsf.edu/) or Dr. Kishor Bhatia, (301) 496-7147; e-mail: bhatiak@mail.nih.gov. NCI - Breast and Ovarian Cancer Family Registries (CFRs) The Breast and Ovarian CFRs facilitate and support interdisciplinary and population-based research on the identification and characterization of breast and ovarian cancer susceptibility genes, with particular emphasis on gene-gene and gene-environment interaction research. Available from the registries are: a) family history, epidemiologic and clinical data, b) updates on cancer recurrence, morbidity and mortality in participating families, and c) biospecimens, including plasma, lymphocytes, serum, DNA, Guthrie cards or buccal smears, and paraffin blocks of tumor tissue. For further information on these registries, contact the CFR Web site (http://epi.grants.cancer.gov/BCFR) or (301) 496-9600. NCI - Specimen Resource Locator The NCI Specimen Resource Locator (http://cancer.gov/specimens) is a database that helps researchers locate specimens for research. The database includes resources such as tissue banks and tissue procurement systems with access to normal, benign, precancerous, and/or cancerous human tissue covering a wide variety of organ sites. Researchers specify the types of specimens, number of cases, preservation methods, and associated data they require. The Locator will search the database and return a list of tissue resources most likely to meet their requirements. When no match is obtained, the researcher is referred to the NCI Tissue Expediter [(301) 496-7147; e-mail: tissexp@mail.nih.gov]. The Tissue Expediter is a scientist who can help match researchers with appropriate resources or identify appropriate collaborators when those are necessary. NIDDK - Biologic Samples from Diabetic Study Foundation A portion (1/3) of all stored nonrenewable samples (plasma, serum, urine) from subjects enrolled in the Diabetes Control and Complications Trial (DCCT) is available for use by the scientific community to address questions for which these samples may be invaluable. Announcements for using this resource appear in the NIH Guide for Grants and Contracts periodically. Inquiries may be addressed to: Catherine C. Cowie, Ph.D., Director, Diabetes Epidemiology Program, NIDDK, 6707 Democracy Blvd., Room 691, MSC 5460, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892-5460. Phone: (301) 594-8804; fax: (301) 480-3503; e-mail: cowiec@extra.niddk.nih.gov. NIDDK - NIDDK Central Repositories (Diabetes Prevention Study) The NIDDK Central Repositories have selected biosamples from the DPT-1 (The Diabetes Prevention Type 1) study that are available to qualified investigators through an application process. These samples are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. Information about how to apply for these materials can be obtained from the NIDDK Central Repositories by contacting Ms. Helen Ray of RTI, 1-919-316-3418, or hmp@rti.org. Direct scientific-technical inquiry to the Project Officer of the NIDDK Central Repositories, Dr. Rebekah Rasooly, at phone: (301) 594-6007; e-mail: rr185i@nih.gov. Visit the Repositories Web site at http://www.niddkrepository.org. NICHD - Brain and Tissue Bank for Developmental Disorders The purpose of the Bank is to collect, preserve, and distribute human tissues to investigators interested in autism and developmental disorders; normal tissues may be available for other research purposes. Further information can be obtained at www.btbank.org. The contact persons are H. Ron Zielke or Sally Wisniewsky, University of Maryland (1-800-847-1539), and Carol Petito or Stephanie Lojko, University of Miami (1-800-592-7246). NICHD - Reproductive Tissue Sample Repository (RTSaR) The Reproductive Tissue Sample Repository (RTSaR) is a virtual repository with online tissue sample acquisition capabilities. The RTSaR provides investigators with real-time access to human and nonhuman primate tissue and fluid inventories from four tissue bank facilities that are supported through the Specialized Cooperative Centers Program in Reproduction Research. The tissue banks are located at the University of California, San Diego (human ovary bank), Stanford University (human endometrium and DNA bank), Johns Hopkins University (male reproductive tissues and fluids), and the Oregon National Primate Research Center (nonhuman primate tissues). The web site for the RTSaR is https://rtsar.nichd.nih.gov/rtsar/login. If you wish to access the RTSaR, you can request an id and password to access the system by contacting the network administrator at RTSaR@mail.nih.gov. Once you access the system, contact information for each bank is provided. Access is open to all investigators living in North America who are supported by research and research training grants from the NIH. One id and password will be provided to each principal investigator that can be utilized by any person working in the P.I.’s laboratory, or, in the case of institutional training grants (T32) and institutional career development award programs (K12), any person supported by the aforementioned awards. NCRR - Human Tissues and Organs Resource (HTOR) The Human Tissues and Organs Resource (HTOR) cooperative agreement supports a procurement network developed by the National Disease Research Interchange (NDRI), a not-for-profit organization. By collaborating with various medical centers, hospitals, pathology services, eye banks, tissue banks, and organ procurement organizations, HTOR provides a wide variety of human tissues and organs—both diseased and normal—to researchers for laboratory studies. Such samples include tissues from the central nervous system and brain, cardiovascular system, endocrine system, eyes, bone, and cartilage. For further information, consult the NDRI Web site (www.ndri.com) or contact Dr. John T. Lonsdale at NDRI, 8 Penn Center, 8th Floor, 1628 JFK Boulevard, Philadelphia, PA 19103. Phone: (800) 222-6374, ext. 271; fax: (215) 557-7154; e-mail: jlonsdale@ndriresource.org. The NDRI Web site is http://www.ndri.com. NCRR - Islet Cell Resource (ICR) With support from NCRR, 10 Islet Cell Resource (ICR) centers isolate, purify, and characterize human pancreatic islets for subsequent transplantation into patients with type I diabetes. The ICR centers procure whole pancreata and acquire relevant data about donors; improve islet isolation and purification techniques; distribute islets for use in approved clinical protocols; and perfect the methods of storage and shipping. In this way, the centers optimize the viability, function, and availability of islets and help clinical researchers capitalize on the recently reported successes in islet transplantation. Information on submitting requests for islet cells can be obtained from Mr. John Kaddis, ICR Coordinating Center Project Manager, City of Hope National Medical Center, 1500 E. Duarte Road, Duarte, California 91010. Phone (626) 359-8111, ext. 63377; fax: (626) 471-7106; e-mail: jkaddis@coh.org. The Coordinating Center hosts a Web site at http://icr.coh.org. NIA - SWAN Repository (longitudinal, multiethnic study of women at midlife including the menopausal transition) The SWAN Repository is a biologic specimen bank of the Study of Women’s Health Across the Nation (SWAN). The SWAN cohort was recruited in 1996/1997 and consists of 3302 African-American, Caucasian, Chinese, Hispanic, and Japanese women. The SWAN Repository contains more than 350,000 blood and urine specimens generated from the study participants’ annual visits (8 visits to date), at which time medical and health history, psychosocial measures, biological measures, and anthropometric data were and are being collected. In addition, a subset of the participants are providing urine samples, collected daily over the length of one menstrual cycle, each year. More than 900,000 of these samples are in the SWAN Repository and are available to researchers who wish to study the midlife and menopausal transition. Additionally, a DNA sample repository is also available and includes DNA as well as transformed B-lymphoblastoid cell lines from more than 1800 of the participants. To learn more about the SWAN Repository and how to apply to use SWAN Repository specimens, contact the Web site at http://www.swanrepository.com or Dr. MaryFran Sowers, University of Michigan, School of Public Health, Epidemiology Dept., (734) 936-3892; e-mail: mfsowers@umich.edu. HUMAN AND ANIMAL CELL AND BIOLOGIC REAGENT RESOURCES NIDDK - National Hormone and Peptide Program The National Hormone and Peptide Program (NHPP) offers peptide hormones and their antisera, tissues (rat hypothalami), and miscellaneous reagents to qualified investigators. These reagents are supplied for research purposes only, not for therapeutic, diagnostic, or commercial uses. These materials can be obtained from Dr. A. F. Parlow of the Harbor-UCLA Medical Center, Research and Education Institute, Torrance, CA. A more complete description of resources within this program is provided in The Endocrine Society journals. Direct scientific-technical inquiry to NHPP Scientific Director, Dr. Al Parlow, at phone: (310) 222-3537; fax: (310) 222-3432; e-mail: parlow@humc.edu. Visit the NHPP Web site at http://www.humc.edu/hormones. NICHD - National Hormone and Pituitary Program (see NIDDK listing) Following is a list of reagents currently available through the resources of NICHD: Androgen receptor and peptide antigen Recombinant monkey (cynomolgus) and baboon luteinizing hormone and follicle-stimulating hormone and antisera. NIA - Aging Cell Bank To facilitate aging research on cells in culture, the NIA provides support for the Aging Cell Bank located at the Coriell Institute for Medical Research in Camden, NJ. The Aged Cell Bank provides fibroblast, lymphoblastoid, and differentiated cell lines from a wide range of human age-related conditions and other mammalian species, as well as DNA from a limited subset of cell lines. For further information, the Aged Cell Bank catalog can be accessed at http://locus.umdnj.edu/nia or contact Dr. Donald Coppock at 1-800-752-3805. NCRR - Various Cell Repositories NCRR maintains the following cell repository resources: National Cell Culture Center, National Stem Cell Resource, and the Yeast Genetic Stock Center. Further information regarding these resources may be obtained through the NCRR Web site at: www.ncrr.nih.gov/ncrrprog/cmpdir/BIOLOG.asp. ANIMAL RESOURCES NIA - Aging Rodent Resources NIA maintains both rat and mouse colonies for use by the scientific community. The animals available range in age from 1 to 36 months. A repository of fresh-frozen tissue from the NIA aged rodent colonies is stocked with tissue from mouse and rat strains, including caloric-restricted BALB/c mice. The NIA also maintains a colony of calorically restricted rodents of selected genotypes, which are available to the scientific community. For further information, please refer to the Aged Rodent information handbook at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentColoniesHandbook/ or contact the Office of Biological Resources and Resource Development order desk. Phone: (301) 496-0181; fax: (301) 402-5597; e-mail: rodents@nia.nih.gov. NIA - Aged Rodent Tissue Bank The rodent tissue bank contains flash-frozen tissues from rodents in the NIA aged rodent colonies. Tissue is collected from rodents at 4 or 5 age points throughout the lifespan. Tissue arrays are also available. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/AgedRodentTissueBankHandbook/. NCRR - Mutant Mouse Regional Resource Centers (MMRRC) The Mutant Mouse Regional Resource Center (MMRRC) Program consists of centers that collectively operate as a one-stop shop to serve the biomedical research community. Investigators who have created select mutant mouse models may donate their models to an MMRRC for broad dissemination to other investigators who request them for noncommercial research investigations related to human health, disease, and treatments. The NCRR Division of Comparative Medicine (DCM) supports the MMRRCs, which are electronically linked through the MMRRC Informatics Coordinating Center (ICC) to function as one facility. The ICC, located at The Jackson Laboratory in Bar Harbor, ME, provides database and other informatics support to the MMRRC to give the research community a single entry point to the program. Further information can be obtained from the Web site at http://www.mmrrc.org, or from Franziska Grieder, D.V.M., Ph.D., Division of Comparative Medicine, NCRR. Phone (301) 435-0744; fax: (301) 480-3819; e-mail: griederf@ncrr.nih.gov. NCRR - Induced Mutant Mouse Resource (IMR) The Induced Mutant Mouse Resource (IMR) at The Jackson Laboratory provides researchers with genetically engineered mice (transgenic, targeted mutant, retroviral insertional mutant, and chemically induced mutant mice). The function of the IMR is to select, import, cryopreserve, maintain, and distribute these important strains of mice to the research community. To improve their value for research, the IMR also undertakes genetic development of stocks, such as transferring mutant genes or transgenes to defined genetic backgrounds and combining transgenes and/or targeted mutations to create new mouse models for research. Over 800 mutant stocks have been accepted by the IMR. Current holdings include models for research on cancer, immunological and inflammatory diseases, neurological diseases and behavioral disorders, cardiovascular diseases, developmental disorders, metabolic and other diseases, reporter (e.g. GFP) and recombinase (e.g. cre/loxP) strains. About 8 strains a month are being added to the IMR holdings. A list of all strains may be obtained from the IMR Web site: www.jax.org/resources/documents/imr/. Online submission forms are also available on that site. All mice can be ordered by calling The Jackson Laboratory’s Customer Service Department at 1-800-422-MICE or (207) 288-5845 or by faxing (207) 288-6150. NIDDK - Mouse Metabolic Phenotyping Centers The mission of the Mouse Metabolic Phenotyping Centers is to provide the scientific community with standardized, high-quality metabolic and physiologic phenotyping services for mouse models of diabetes, diabetic complications, obesity, and related disorders. Researchers can ship mice to one of the four Centers (University of Cincinnati, University of Texas Southwestern Medical Center, Vanderbilt University, and Yale University) and obtain on a fee-for-service basis a range of complex exams used to characterize mouse metabolism, blood composition, energy balance, eating and exercise, organ function and morphology, physiology, and histology. Many tests are done in living animals and are designed to elucidate the subtle hallmarks of metabolic disease. Information, including a complete list of available tests, can be found at www.mmpc.org, or contact Dr. Maren R. Laughlin, NIDDK, at (301) 594-8802; e-mail: Maren.Laughlin@nih.gov; or Dr. Kristin Abraham, NIDDK, at (301) 451-8048; e-mail: abrahamk@extra.niddk.nih.gov. NCRR - National Primate Research Centers (NPRCs) National Primate Research Centers (NPRCs) are a network of eight highly specialized facilities for nonhuman primates (NHP) research. Funded by grants through NCRR’s Division of Comparative Medicine (DCM), each center, staffed with experienced research and support staff, provides the appropriate research environment to foster the development of NHP models of human health and disease for biomedical investigations. The NPRCs are affiliated with academic institutions and are accessible to eligible biomedical and behavioral investigators supported by research project grants from the National Institutes of Health and other sources. Further information may be obtained from the notice, Procedures for Accessing Regional Primate Research Centers, published in the NIH Guide for Grants and Contracts at http://grants2.nih.gov/grants/guide/notice-files/not97-014.html, or from John Harding, Ph.D., National Primate Research Centers and AIDS Animal Models Program, Division of Comparative Medicine, NCRR. Phone: (301) 435-0744; fax: (301) 480-3819; e-mail: hardingj@mail.nih.gov. NIA - Nonhuman Primates, Aging Set-Aside Colony NIA maintains approximately 200 nonhuman primates (M. mulatta) at four National Primate Research Centers (see above) for conducting research on aging. These animals range in age from 18 to 35 years. While these animals are predominantly reserved for non-invasive research, exceptions can be made to this policy. For further information, please contact Dr. Nancy Nadon, Office of Biological Resources and Resource Development, NIA. Phone: (301) 402-7744; fax: (301) 402-0010; e-mail: nadonn@nia.nih.gov. NIA - Nonhuman Primate (NHP) Tissue Bank and Aging Database The NIA developed two new resources to facilitate research in the NHP model. The NHP tissue bank contains fresh-frozen and fixed tissue donated by primate centers around the country. Information is available at http://www.nia.nih.gov/ResearchInformation/ScientificResources/NHPTissueBankHandbook.htm. The Primate Aging Database provides an internet accessible database with data from thousands of primates around the country. It can be used to investigate the effect of age on a variety of parameters, predominantly blood chemistry and husbandry measurements. The site is password protected. The URL is http://ipad.primate.wisc.edu. NIA - Obesity, Diabetes and Aging Animal Resource (USF-ODARC) The NIA supports a colony of aged rhesus macaques, many of which are obese and/or diabetic. This is a long-term colony of monkeys housed at the University of South Florida’s Obesity, Diabetes and Aging Research Center. They have been extensively and longitudinally characterized for general health variables, blood chemistry, food intake, and body weight. Diabetic monkeys are tested daily for urine glucose and ketone levels, and prediabetic monkeys are tested weekly. Data for some of the monkeys extend as far back as 15 years. This unique resource is available for collaborative studies. ODARC has a significant amount of stored tissue collected at necropsy and stored blood/plasma collected longitudinally. Serial blood collection or tissue collection at necropsy can also be performed prospectively. Testing and imaging can also be performed on the monkeys. Inquiries regarding collaborative studies using the ODARC colony should be directed to: Barbara C. Hansen, Ph.D., Director, Obesity, Diabetes and Aging Research Center, University of South Florida, All Children’s Hospital, 801 6th Street South #9340, St. Petersburg, FL 33701. Phone: (727) 767-6993; fax: (727) 767-7443; e-mail: bchansen@aol.com. NCRR - Various Animal Resources NCRR maintains the following animal resources: Animal Models and Genetic Stocks, Chimpanzee Biomedical Research Program, NIH Animal Genetic Resource, and the Specific Pathogen Free Macaque Breeding and Research Program. Further information regarding these and other resources may be obtained through the NCRR Web site at www.ncrr.nih.gov/comparative_med.asp. IN SILICO RESOURCES NIDDK, NHLBI, and NIEHS - Nuclear Receptor Signaling Atlas The Nuclear Receptor Signaling Atlas (NURSA) has created an in silico resource comprised of curated information about Nuclear Receptors, Coregulators, Ligands, and Downstream Targets. NURSA is sponsored by NIH and provides online access through a public webportal at www.NURSA.org. Ease of navigation through a series of molecule pages allows users to make queries about Nuclear Receptors, Coactivators and Corepressors. Additional information about nuclear receptor ligands is provided, as well as primary datasets relating to expression profiling of nuclear receptors, coregulators and downstream targets. The molecule pages are hyperlinked to data contained in external databases, including NCBI, KEGG, UniProt, and others, allowing for detailed data mining. In partnership with The Endocrine Society, NURSA and Molecular Endocrinology (http://mend.endojournals.org/) have reciprocal links designed to enhance publications in Molecular Endocrinology and the information available through the NURSA molecule pages. Links to additional relevant literature citations are from PubMed at the National Library of Medicine. MISCELLANEOUS RESOURCES NCRR - National Gene Vector Laboratories (NGVLs) The National Gene Vector Laboratories (NGVLs), with core funding from NCRR, serve as a resource for researchers to obtain adequate quantities of clinical-grade vectors for human gene transfer protocols. The vector types include retrovirus, lentivirus, adenovirus, adeno-associated virus, herpes-virus, and DNA plasmids. The NGVLs consist of three vector production centers at: Baylor College of Medicine; City of Hope National Medical Center and Beckman Research Institute; and Indiana University, which also serves as the Coordinating Center for all the laboratories. Two additional laboratories conduct toxicology studies for NGVL-approved investigators. These laboratories are located at the Southern Research Institute and the University of Florida. Additional information about the process for requesting vector production and/or pharmacology/toxicology support should be directed to Ms. Lorraine Matheson, NGVL Project Coordinator, Indiana University School of Medicine. Phone: (317) 274-4519; fax: (317) 278-4518; e-mail: lrubin@iupui.edu. The NGVL Coordinating Center at Indiana University also hosts a Web site at http://www.ngvl.org. NCRR - General Clinical Research Centers (GCRCs) The General Clinical Research Centers (GCRCs) are a national network of 82 centers that provide optimal settings for medical investigators to conduct safe, controlled, state-of-the-art in-patient and out-patient studies of both children and adults. GCRCs also provide infrastructure and resources that support several career development opportunities. Investigators who have research project funding from the National Institutes of Health (NIH) and other peer-reviewed sources may apply to use GCRCs. Because the GCRCs support a full spectrum of patient-oriented scientific inquiry, researchers who use these centers can benefit from collaborative, multidisciplinary research opportunities. To request access to a GCRC facility, eligible investigators should initially contact a GCRC program director, listed in the National Center for Research Resources (NCRR) Clinical Research Resources Directory (www.ncrr.nih.gov/ncrrprog/clindir/crdirectory.asp). Further information can be obtained from Anthony R. Hayward, M.D., Director, Division for Clinical Research Resources, National Center for Research Resources at NIH. Phone: (301) 435-0790; e-mail: haywarda@ncrr.nih.gov.
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Hopkins, Lekkie. "Articulating Everyday Catastrophes: Reflections on the Research Literacies of Lorri Neilsen." M/C Journal 16, no. 1 (2013). http://dx.doi.org/10.5204/mcj.602.

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Abstract:
Lorri Neilsen, whose feature article appears in this edition of M/C Journal, is Professor of Education at Mount Saint Vincent University in Halifax, Nova Scotia, Canada. Neilsen has been teaching and researching in literacy studies for more than four decades. She is internationally recognised as a poet and as an arts-based research methodologist specialising in lyric inquiry. In the latter half of this last decade she was appointed for a five year term to be the Poet Laureate for Nova Scotia. As an academic, she has published widely under the name of Lorri Neilsen; as a poet, she uses Lorri Neilsen Glenn. In this article I refer to her as Neilsen. This article reflects specifically on the poetics and the politics of the work of poet-scholar Lorri Neilsen. In doing so, it explores the theme of catastrophe in several senses. Firstly, it introduces the reader to the poetic articulations of the everyday catastrophes of grief and loss found in Neilsen’s recent work. Secondly, it uses Neilsen’s work on grief and loss to draw attention to a rarely recognised scholarly catastrophe: the catastrophe of the methodological divide between the humanities and the social sciences that runs the risk of creating, for the social sciences, a limiting and limited approach to research project design, knowledge production, and relationships between researchers and subjects, to which Lorri Neilsen’s ground-breaking use of lyric inquiry is a response. And thirdly, it alerts us to the need to fight to retain the arts and humanities within universities, in order to avoid a scholarly catastrophe of a different order. In undertaking this exploration, the article uses several terms with which some readers of M/C Journal might not be familiar. Research literacies is a term used to signal capacity and fluency in the understanding and use of research methodologies. Arts-based inquiry is the umbrella term used by researchers using their creative practice in the arts—in writing, theatre performance, visual arts, music, dance, movement—to lead them into new insights into the topic under investigation. This work is frequently embodied and sensuous. So, for example, the understanding of anorexia might be deepened by a dance performance or a series of paintings or a musical score devised in response to work with research participants; or, as I argue here, understandings of the everyday catastrophes of grief and loss might be deepened by the writing of poetry or expressive prose that uncovers nuance and sheds light in ways not possible using the more traditional research methodologies available to social scientists. Lyric inquiry, a sub-set of arts-based inquiry, is Neilsen’s own term for a research methodology that uses writing itself as the research tool, and whose hallmark is embodied language expressed as poem, song, or poetic prose, to “create the possibility of a resonant, ethical, engaged relationship between the knower and the known” (Handbook 94).This article, then, reflects on the research work of Lorri Neilsen. In this article I use Neilsen’s responses to grief and loss as the starting point to follow her journey from the early days of her involvement in literacy research to her present enchantment with arts-based inquiry in literacy and social science research. I outline her writing on research literacies, explore her notion of lyric inquiry as a crucial facet of arts-based research, and conclude with examples of her poetry born of creative reflection on what we might call everyday catastrophes. Ultimately I argue the need to avoid a scholarly catastrophe of a different order from those Neilsen explores, through the continued recognition of the crucial place of the arts in academic institutions.I open with excerpts from a piece in Lorri Neilsen’s collection, Threading Light, published in 2011. This piece, The Sea, written out of the grief of losing her aged mother, is one I find most moving. It begins: Days later—a week, a month, hard to tell—sun comes out of drizzle and ice and fog and snow showers, ripping open a bright day. Snow-mounded. If you were a kid, you’d look for your sled. He is sure the box of wrenches is in the cabin, and you know a drive to the country is better than another day in bed with Kleenex and a hacking cough, hiding a flayed heart, and pouring CBC into your ears around the clock. (104) The two figures in the piece, he and she, head south to their seaside cabin. They take a walk beside an ice-covered seashore.Today, you step carefully because of ice, and what you find catches your breath. For a brief moment you have escaped the grizzly claws of grief ripping at your chest. You are kneeling on the ice, touching the frosted edges of kelp and weeds, slimy umber and sienna, and putrid green growths that slurp in and out most of the year, but here, now, are stunned, immobile, impaled on the rocks by the cold. Desire is a feral animal; let it loose, it will seek beauty. You point out to each other tableaus: rimming white, translucent blues and greens, coppered plants flash-frozen, fringed by crystalline tatters. A Burtynsky, you think, but not man-made. This is life’s ebb, as Tu Fu wrote. The ocean’s winter verge. Death’s magnificent intaglio. Your fingers follow the lines of kelp: these things once lived, and moved. Take the long view, maybe they still do. You pause to sit on a cold rock and look at the sky; for a moment you are back beside her body, that last morning, your fingers on cooling flesh. Then, water, the sound of waves. Presence. You look up. He has found one periwinkle fused to a rock, then another. Several more. He places them in your hand, one by one, each dark brown ball with its own scurf of ice that gives off the smallest breath of mist as it touches the heat of your palm. Each a small jolt. This is what the sea creates while you are busy with your own tides: precise cups of glossy perfection with curves like a blues howl that open your heart, craning for light. (Threading Light 104–5)One of the things I appreciate most about Lorri Neilsen’s lyric work is her capacity to hold the miniscule simultaneously with the universal; a flash of insight under the arc of a timeless sky. “Smaller than small; larger than large,” write the Hindu prophets (Upanishads). “This is what the sea creates while you are busy with your own tides,” she writes, and in that moment of reading I am jolted into an awareness of the contours of grief that no amount of social scientific observation could provide: an awareness of the nature of self-absorption and inward focus so intense that even the most inevitable of natural rhythms—the ocean’s tides—are forgotten: forgotten, that is, until the protagonist is shaken awake again, by exquisite beauty, into a new kind of response-ability to the world. Lorri Neilsen’s feature article in this edition of M/C creates layer upon layer of insights exploring the notion that loss, an everyday catastrophe, involves a turning inside-out, a jolting into a new sense of self, or a propulsion out of an old, restrictive one; and that inevitably it propels us headlong into a state of living in the moment, of being present to what is, rather than distantly taking stock of what we have. As I ponder this experience, as a reader of her work, I re-experience that moment of stasis:physiologically we all know that experience of time suspended after shock, time inexplicably, irrationally, standing still. But what Neilsen has done so successfully as a poet-scholar, in my view, is not simply find words to express this turning inside out as poetry. Additionally, she has claimed the moment of poetic insight as a crucial form of knowledge-making that has a central and necessary place in illuminating our social worlds. This claim has far-reaching political significance for social science researchers, introducing, as it does, a re-invigorated understanding of the very concept of research:Research [she tells us] is not only the creation of products to market at the academic fair; research is the process of learning through the words, actions and revisionings of our daily life. […] Research is the attuned mind/body working purposefully to explore, to listen, to support, to transgress, to gather with care, to create, to disrupt, to offer back, to contribute, sometimes all at once […] Inquiry is praxis that cannot be boxed up and delivered: it is a story with no ending. (Knowing 264) Neilsen’s particular fascination is with lyric inquiry which she claims as political, poetic, and sustaining of the individual and the larger world: It has the capacity to develop voice and agency in both researcher and participant; it foregrounds conceptual and philosophical processes marked by metaphor, resonance and liminality; and it reunites us with the vivifying effects of imagination and beauty – those long-forgotten qualities that add grace and wisdom to public discourse. (Knowing 101)So what has led her here, to that place where lyric inquiry forms the basis of her engagement with the knowledge-making endeavour in the academy and beyond? As a feminist scholar fascinated by biography, by life writing and story, I find myself drawn as much towards the story of Neilsen’s evolution as a poet-scholar as to the work itself. How has she come to an awareness of the need to create new ways of doing research? What has she uncovered here about the ethics and the politics of doing research in the social world? As I read her work I become aware that her current desire to dance at the edge of the conventional research world has been driven as much by a series of professional catastrophes as by an underpinning desire for methodological innovation. Neilsen herself explores these issues in her 1998 collection of academic essays, called Knowing Her Place: Research Literacies and Feminist Occasions. There are several threads weaving their way through this account of a young academic researcher and scholar finding her way into a larger, wiser, more resonant space: there’s the story of the young graduate student learning the language of and experiencing the perpetual isolation of disembodied fact-finding statistically resonant research into literacy; there’s the story of the young mother juggling academic life and research and parenting, wanting to make sense to the teaching research participants she is working with, wanting to close the gap between the public and the private worlds, wanting to spend time with her partner and her two sons, especially her second son whose birth could have been a catastrophe but whose gentle ways of being in the world gifted them all with the desire to slow down, to see afresh; and, later, there’s the story of the mature woman whose impulse is to community and to solitude, to living with a generosity of spirit that takes seriously the intertwining of her poetic life and her academic and everyday worlds. Interwoven with these stories is the story of writing itself: here we find the formal disembodied writing of Western scientific research practices; here now is collectivist writing generated at kitchen tables, in community centres, in schools; here now is every mode of writing that evokes nuance and explores the senses; and here now too is the research writing that privileges response-ability, scholartistry, bodily sensation, reciprocity, engagement with the world.Neilsen’s account of this journey begins when, as a young postgraduate student doing research into literacy, she learned the language of statistical significance to measure syntactic complexity, noting, as she wrote up her MA, the distance between the language she had learned and the everyday language of the classroom teachers the research was meant to inform. The emphasis of this early research was on removing language from its context, isolating components of language for scrutiny, making findings that were replicable. In time she came to see this kind of knowledge-making as dry, limited, rule-bound, androcentric. From this disengaged, disembodied place she moved, over decades, into a space where compassion, wisdom, humility, and wonder combine to locate her as researcher who understands, alongside researcher David Smith, that “writing is a holy act, an articulation of limited understanding” (qtd. in Neilsen, Knowing 119). In an echo of Luce Irigaray’s insistence that the research and writing we do as fully alive feminist scholars will link the celestial and the terrestrial, the horizontal, and the vertical, and in a further echo of Helene Cixous’ claim that when writing from the body, “an opera inhabits me” (Cixous 53), Neilsen writes unabashedly of the metaphysical nature of her research world: Artful living, artful writing, connecting with a purpose to help each other transcend and grow through inquiry. Connection, embodiment, transformation, transcendence. All these expressions tap spiritual chords […] But if inquiry is to transcend the destructive circumstances of our lifeworlds, if its purpose is to make a difference, not a career, we cannot avoid using words such as vision, spirit, humanity, soul. Interest in metaphysical perspectives is not new in feminist circles, but is IS new in conventional research communities where the intangible, the deeply disturbing and consciousness-awakening dimensions of life are compartmentalized, reserved […] for a walk by the ocean, for the rare meditative times of our lives, if we find them at all […] But (she concludes) the awareness that we know when we live in the eternal present […] is an awareness full of tremendous power, and, ultimately, hope. (Knowing 280)In the final chapter of this 1998 text outlining her journey into research literacies, called Notes on Painting Ghosts and Writing the Poetry Report: Some Things I know But Not For Certain, Lorri Neilsen writes confidently against the grain of what she sees as the limits of androcentric research practices: Everything we know is at once out there and in here […] My place is to apprentice myself to the world, to paraphrase Merleau-Ponty, not in subservience and compliance, as the androcentric practices we have followed would keep me, but in reciprocity, curiosity and response-ability. What we must seek are the transgressive experiences and the fresh words which reveal us, in Annie Dillard’s words, ‘startlingly to ourselves as creatures set down bewildered’. (qtd. in Neilsen, Knowing 261)And in a gesture that I find heartwarming, she writes of the impact of being scooped up into a collective research-making endeavour, of belonging to a community of scholars (including poet-sociologists Laurel Richardson and Trinh T. Minh-ha) whose research agenda is to expand the ways we might know, to reflect the fullness and richness and complexity of the research endeavour itself, and, in so doing, of human experience: Time and enculturation have combined to make inquiry a terrain where I live, rather than a place I visit on occasion.Inquiry is less a stance and more an intentional gesture, a re-bodied approach to working with people, particularly women, on projects which matter to them locally and globally. Inquiry is a conspiracy, a breathing together, for which we need the conditions of being together and sharing a climate, or air, for breathing. Inquiry values difference, rather than fearing it, sees contiguity or complementarity as necessary for working together without suppressing our diversity. (Knowing 262) Hers is no airy-fairy disengaged mood-making endeavour. It is decidedly political: the inclination is to openness and growth, to take risks, to create critical spaces[…] When we make the assumptions of the norms of research problematic, we make the assumptions and the norms of life together on this planet problematic as well. We begin to dismantle the Western knowledge project, and we begin to learn a fundamental humility. Expanding our research literacies keeps us full of wonder, in spite of the shakey ground and the shadows. We can learn more when our pen is a tool of discovery, not domination.And her focus is ever on the artistry of research practices: The ontological and epistemological waters in which these [research] literacies continue to develop are social, political, ecological [...] Re-imagining inquiry is re-imagining ways to work with people and ideas which keep us, like the painter, the dancer, and the performance artist, watchfully poised, momentarily still, and yet fluidly in motion. (Knowing 263)In summary, then, the kind of writing that accompanies the research methodology that Lorri Neilsen has created cuts across the notion of knowledge as product, commodity, trump card. Knowing [for Neilsen] is an experience of immersion and expression rather than one of gathering data only to advance an argument […] A reader does not take away three key points or five examples. A reader comes away with the resonance of another’s world…our senses stimulated, our spirit and emotions affected. (Knowing 96) This kind of writing emerges from her desires to create a resonant, embodied, ethical, activist, feminist-honouring, and collaborative way to grapple with the nuance of human experience. This she calls lyric inquiry. Lyric inquiry sits on the margins, inhabits the liminal spaces, “places where we perceive patterns in new ways, find sensuous openings into new understandings, fresh concepts, wild possibilities” (Knowing 98). In her chapter on lyric inquiry in the 2008 Sage Handbook of the Arts in Qualitative Research, Neilsen argues that lyric inquiry leans on no other mode of enquiry: it stands on its own, resonant and expressive, inviting fresh ways to see, read, consider experience. Unlike the narrative enquiry that currently popularly accompanies much social science research in order to bolster an argument, or illustrate a point being made in policy formulation or discussion (Hopkins), lyric inquiry adopts its own mode, its own performative spaces. It’s a heady concept and, I would argue, a brave contribution to the repertoire of qualitative arts-based research methodologies.For me Lorri Neilsen’s stance as poet, writer, researcher, woman, is beautifully captured in her piece from Threading Light which she has titled Writing has always felt like praying. Here we glimpse the lives of four figures: the Buddha, Muhammad, Jesus Christ, and the poet herself, each responding to catastrophe of sorts: Gotama saw the face of his infant son and sleeping wife,shaved his head and beard, put on his yellow robe, andleft without saying good-bye. Duties, possessions,ties of the heart: all dustweighing down his soul. He walked and walked,seeking a life wide open, complete and pure as polished shell.In a cave away from the fray of Mecca, vendettas,and a world soured by commerce, Muhammadshook as the words of a new scripturecame to him. Surrendered himselfto its beauty, singing and weeping verse by verse, year by yearfor twenty-one years.Of course you remember the man from Galileewho carried on his back the very wood on whichhis blood was spilled. How he pushed back the rockfrom the front of the cave and – this is gospel –ascended, emptied of self and full of god, returningnow in offerings of bread and wine.I pace back and forth on a cliff above the unknowable, luredby slippery and maverick tales that call forth terror, crackthe earth, shatter my bones with light. I have no needto verify old brown marks of stigmata, translate Coptic fragments.A burlap robe on display in the cold stone air of the Church of Santa Croceis inscrutable: it tells me only that my body is a ragged garmentand will be discarded too.But here, now, I am ready as a tuned stringto witness what is ravenous, mythic. Here I am holy, misbegotten,gossip on the lips of the gods, forgotten by the time the cupsare washed and put away. So I start as I start every day,cobbling a makeshift pulpit, casting for truths as they are given me:Man, woman, child, sun, moon, breath, tears,Stone, sand, sea. (Threading Light 102–3) It is ironic that the kind of research that Neilsen advocates, research that draws specifically on the arts to create new methodologies for the uncovering of topics traditionally explored by the social sciences, is being developed at precisely that moment when university arts departments around the world are being dismantled, and their value questioned (See Cohen, NY Times; Donoghue, Chronicle of Higher Education; Kitcher, Republic). As I indicated at the beginning of the article, I use this homage to Lorri Neilsen and her work to make the broader point that we lose the arts and the humanities in our universities at our peril. It’s not just that the arts are a pleasant addition, a ruffle on the edge of the serious straight-tailored cut of the research garment: rather, as Neilsen has argued throughout her research and writing career, the arts are central to our survival as a response-able, interactive, creative, thoughtful species. To turn our back on the arts in contemporary research practices is already a dangerous erosion, a research and knowledge-making catastrophe which Neilsen’s lyric inquiry seeks to address: to lose the arts from universities altogether would be a catastrophe of a much higher order. References Cohen, Patricia. “In Tough Times, the Humanities Must Justify Their Worth”. New York Times. 24 Feb. 2009. Cixous, Helene. Coming to Writing and Other Essays. Ed. Deborah Jensen. Cambridge: Harvard University Press, 1991.Dillard, Annie. The Writing Life. New York: Harper & Row, 1993. Donoghue, Frank. “Can the Humanities Survive the 21st Century?” The Chronicle of Higher Education. 5 Sep. 2010. Hopkins, Lekkie. “Why Narrative? Reflections on the Politics and Processes of Using Narrative in Refugee Research.” Tamara Journal for Critical Organisation and Inquiry 8.2 (2009): 135-45.Irigaray, Luce. “Sexual Difference.” The Irigaray Reader. Ed. Margaret Whitford. Oxford: Blackwell, 1987. 165-77. Kitcher, Philip. “The Trouble with Scientism”. New Republic. 4 May 2012.Muller, M. (trans.). The Upanishads. Oxford: The Clarendon Press, 1879.Neilsen Glenn, Lorri. Threading Light. Explorations in Loss and Poetry. Regina, SK: Hagios Press, 2011. Neilsen, Lorri. “Lyric Inquiry.” Handbook of the Arts in Qualitative Research. Eds. J. Gary Knowles and Ardra Cole. Thousand Oaks: Sage, 2008. 88-98. Neilsen, Lorri. Knowing Her Place: Research Literacies and Feminist Occasions. San Francisco: Caddo Gap Press, and Halifax, NS: Backalong Books, 2008. Richardson, Laurel. “The Consequences of Poetic Representation: Writing the Self and Writing the Other.” Investigating Subjectivity: Windows on Lived Experience. Eds. Carolyn Ellis and Michael Flaherty. Newbury Park: Sage, 1992. 125-140. Richardson, Laurel. “Writing: A Method of Inquiry.” Handbook of Qualitative Research. Eds. Norman K. Denzin and Yvonna. S. Lincoln. Thousand Oaks: Sage, 1994. 959-978.Trinh, T. Minh-ha. Woman, Native, Other. Bloomington and Indianapolis: Indiana University Press, 1989.
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Ashton, Daniel, and Martin Couzins. "Content Curators as Cultural Intermediaries: “My reputation as a curator is based on what I curate, right?”." M/C Journal 18, no. 4 (2015). http://dx.doi.org/10.5204/mcj.1005.

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In 2011 The Economist alerted us to the claim that “digital data will flood the planet.” The exponential increase in data such as e-mails, Tweets and Instagram pictures underpins claims that we are living in an age of ‘infoglut’ (Andrejevic) and information superabundance (Internet Live Stats). Several years earlier, Shirky posed this as an issue not of “information overload” but of “filter failure” (Asay). Shirky’s claim suggests that we should not despair in the face of unmanageable volumes of content, but develop ways to make sense of this information – to curate. Reflecting on his experiences of curating the Meltdown Festival, David Byrne addressed the emergence of everyday curating practices: “Nowadays, everything and everyone can be curated. There are curators of socks, menus and dirt bike trails […] Anyone who has come up with a top-ten list is, in effect, a curator. And anyone who clicks ‘Like’ is a curator.” Byrne’s comments on socks and top ten lists captures how curating can be personal. In their discussion of curating as a new literacy practice, Potter and Gilje highlight how “as well as the institutional and professional contexts for such work through the centuries and across cultures, many people have made personal collections of texts and artefacts that have stood for them in the world” (123). The emergence of easily, and often freely, available content curating tools is linked to practices of accessible curating (Good). There has been a proliferation of content curating platforms and tools. Notwithstanding that accessibility and everyday usage are often the hallmark of content curating (for example, see Villi on social curating and user-distributed content), this article specifically focuses on content curating as a service. Defining the content curator as “someone who continually finds, groups, organizes and shares the best and most relevant content on a specific issue online”, Bhargava in 2009 described content curating as the next big social media job of the future. Popova stresses the importance of authorship and approaching curating as a “form of creative labor in and of itself” and identifies content curators as “human sense-makers” in a culture of “information overload”. By addressing curating ‘content for others’ rather than other curatorship practices such as ‘content for me’ and ‘content about me’, we aim to offer insights into the professional and commercial practices of content curating. Through connecting autoethnographic research with academic literature on the concept of ‘cultural intermediaries’, we identify two ways of understanding professional content curating - connected cultural intermediation, and curating literacies. Researching Content Curators as Creative Labour In his introduction to Curation Nation, Rosenbaum suggests that there is “both amateur and professional curation, and the emergence of amateur or prosumer curators isn’t in any way a threat to professionals” (3). Likewise, we do not see a threat or tension between amateur and professional curating. We are, though keen to address ‘professional’ strategic content curating for an intended audience as a notable difference and departure. To generate detailed insights into the role of the professional content curator we employed an autoethnographic approach. Holt’s review of the literature and his own experiences of autoethnography provide a helpful overview: “autoethnography is a genre of writing and research that connects the personal to the cultural, placing the self within a social context” (2). Specifically, we focus on Couzins’ personal experiences of content curating, his professional practices and his ‘cultural milieu’ (Reed-Danahay). Couzins was a business-to-business journalist for 17 years before starting a content and communications agency that: helps organisations tell their story through curated and created stories; runs a media brand for corporate learning, which features curated content and a weekly curated e-mail; designs and delivers massive open online courses on the Curatr platform (a social learning platform designed for curating content). The research and writing process for our analysis was informed by Anderson’s approach to analytical autoethnography, and from this we stress that Couzins is a full member of the research setting. Our focus on his experiences also resonates with the use of first-hand narratives in media industries research (Holt and Perren). Following preliminary exchanges, including collaborative note taking and face-to-face conversations, Ashton created an interview schedule that was then reviewed and revised with Couzins. This schedule was used as the basis for a semi-structured interview of around 90 minutes. Both authors transcribed and coded the interview data. Through thematic analysis we identified and agreed on five codes: industry developments and business models; relationships with technologies; identifying and sharing information sources; curating literacies; expertise and working with/for clients. This research paper was then co-written. As a conversation with only two participants, our account runs up against the widely stated concern associated with autoethnography of observing too few cultural members and not spending enough time with others (Coffey; Ellis, Adams and Bochner). However, we would argue that the processes of dyadic interviewing underpinned by self-analysis provides accessible and “useful stories” (Ellis, Adams and Bochner). Specifically, Anderson’s five features helped to guide our research and writing from documenting personal experience and providing insider perspectives, to broader generalisation and “theoretical development, refinement, and extension” (387). Indeed, we see this research as complementing and contributing to the large scale survey research undertaken by Liu providing excerpts on how “technology bloggers and other professionals explain the value of curating in a networked world” (20). The major theme emerging from the interview exchange, perhaps not unexpectedly, is how professional content curating revolves around making sense of specific materials. In acting as a bridge between the content and publications of some and its reception by others, literature on cultural intermediaries was identified as a helpful conceptual pointer. The relevance of this concept and literature for exploring professional content curators is illuminated by Smith-Maguire and Matthews’ comments that “cultural intermediaries impact upon notions of what, and thereby who, is legitimate, desirable and worthy, and thus by definition what and who is not” (552). The process of curating content necessarily involves judgements on what is deemed to be desirable and worthy for clients. Scholarship on cultural intermediaries was explicitly explored in the interview and co-writing stages, and the following covers some of the meeting points between our research and this concept. Content Curators as Cultural Intermediaries: Taste, Expertise and Value The concept of cultural intermediaries has been explored by academics in relation to a range of industries. This paper does not necessarily seek to add content curators to the expanding list of occupations analysed through the cultural intermediaries’ lens. There are though a range of questions and prompts from studies on cultural intermediaries helpful for understanding the ways in which content is made sense of and circulated. Smith-Maguire and Matthews’s 2012 article ‘Are We All Cultural Intermediaries Now?’ is particularly helpful for connecting content curating with debates on cultural intermediaries. They consider how cultural intermediaries “effect other’s orientation” (552), and the question they pose is directly relevant for thinking through distinctions in curating ‘for/about me’ and ‘for others’. The following statement by Couzins on a client relationship with a private membership network provides a useful account of what the job of content curating involves: Each week I curate a set of articles or videos on hot topics that have been identified by network members. Once I have identified suitable content I upload links to their website, including a reading time and a short summary. These two elements serve to help members decide whether or not to read it and when to read it. For example, if they have a short train journey they might have time to read a ten-minute article. All articles are tagged so that the curated links become a deeper resource over time and members are alerted by e-mail each week when new links have been published. The reference to “suitable content” highlights how the curator can shape a narrative by intentionally deciding what to keep in and what to leave out. Beyond this choice of what the client is directed to, there is also the importance of the “short summary” and thus how this curated content is packaged and made sense of by the curator for the client. McFall, in her contribution to the Cultural Intermediaries Reader, offers a specific lens for examining the distinctive filtering practice of content curators as acts of ‘economization’. McFall outlines how economization “involves the work of ‘qualifying’ behaviours, organizations and institutions as economic. This is positioned in contrast to the idea that there is some kind of mystery “x-factor” which defines things as inherently economic” (46). McFall explains how “things are rendered (i.e. they become) economic through the actions of producers, governments, research organisations, media, consumers, and so forth. Economization allows for the ways things may, throughout their life cycle, move in and out of being economic” (46). Whilst McFall’s comments recognise how things may be rendered economic through, for example, a ‘top ten list’, we want to specifically examine what this rendering looks like with the ‘professional’ content curator. The act of filtering is one of rendering, and the content that is curated and shared (whether it be articles, videos, links, etc.) becomes economic within this specific context. Whilst there are many organisations that would provide the regular service of producing curated content, two distinctive approaches were revealed in our exchange. The first approach we identify concerns content curating as connected cultural intermediation, and the second approach we identify concerns facilitating curating literacies and co-creation with clients. Connected Cultural Intermediation Connected cultural intermediation refers to how content curators can connect with their own clients and with producers of content. As the following explores, these connections are built around being explicit and open about the content that curators identify and how they filter it. Being open with producers of content was important as these connections could lead to future opportunities for Couzins to identify content for his clients. Couzins addresses the connections he makes in terms of transparency, stating: “you just need to have some more transparency around you as the curator, like who you are, who you represent, why you are doing it, and the scope of what you are looking at.” Part of this involves identifying his impact and influences as a taste-shaper. Couzins remarks, “I'm creating a story […] but my point of view will be based on my interest in what I bring to the curating process.” Transparency was further presented as a part of the process in which judgements and validations are made: “My reputation as a curator is based on what I curate, right? So therefore it has to be as sound as it can be, and I try to be as dispassionate as I can be about this.” These comments capture how transparency is integral for how Couzins establishes his reputation as a content curator. Couzins promotes transparency in content usage by alerting content producers to where content is curated: I also share on Twitter, so they [producers] know it's been shared because they are included in the retweets, for example. I would tell some people that I've linked to their stuff as well, and sometimes I would also say "Thank you," to so and so for linking to that. It's like thanking my supply chain, if you like. Because it's a network. The act of retweeting also operates as a means to develop connections with producers of content. As well as indicating to producers that content is being used, Couzins’ reference to the “supply chain” indicates the importance he invests in establishing connections and the wide circulation of curated content. One approach to content curating as a commercial practice could be to limit access and create a “pay wall” style scenario in which the curated content can only be accessed after a payment. Curated materials could be sent directly to e-mail or uploaded to private websites. For Couzins however, it is access to the flows of content and the connections with others that underpin and enable his content curating commercial practice. It is important for Couzins that curated content is available to the producers, clients and more publicly through his free-to-access website and Twitter feed. The earlier reference to reputation as a curator in part concerned being dispassionate and enabling verification through open and explicit acknowledgements and links. This comment also addresses generating a reputation for “sound” information. The following comments pick this up and point to the need for engaging with different sources: “I have got my own bubble that I operate in, and it's really challenging to get out of that bubble, bring new stuff in, or review what's in there. I find myself sharing stuff quite a lot from certain places, sometimes. You've got to work at that. It's hard.” Working hard to escape from the bubble was part of Couzins’ work to build his reputation. Acknowledging producers is both a way for Couzins to promote transparency around his filtering and a way to foster new sources of content to escape the bubble: “I do build some relationships with some of the producers, because I get to know them, and I thank them, and I say, ‘That's really good,’ so I have a lot of relationships with people just through their content. But it's not a commercial relationship.” Whilst Couzins suggests there may not be a commercial relationship with the producers of content, economic significance can be seen in two ways. Firstly, moving outside of the ‘bubble’ can help the content curator make more diverse contributions and establish a reputation for this. Secondly, these connections can be of benefit to content producers as their material further circulates. Whilst there is no payment to the content producer, Couzins directs this curated content to clients and does not restrict wider public access to it in this curated form. McFall’s comments on economization stress the role of cultural intermediaries in the life cycle of how things “move in and out of being economic.” With content curating there is a ‘rendering’ of content that sees it become significant in new contexts. Here, the obvious relationship may be between Couzins and his clients. The references to transparent relationships and thanking the ‘supply chain’ show that relationships with content producers are also crucial and that the content curator needs to be continually connecting. Curating Literacies and Co-Creation In the earlier discussion of cultural intermediaries we addressed framing and how judgements can shape legitimacy, desirability and worth. With the content curating cultural intermediary practices under discussion here, a different perspective is possible in which subject specialist knowledge and expertise may not necessarily be the primary driver behind clients’ needs. The role of the content curator as cultural intermediary here is still in the rendering of content. However, it does not specifically involve the selecting content but guiding others in the framing and circulation of content. Where the concern of the client is finding appropriate ways to share the materials that they identify, then the content curator may not need subject-specialist knowledge. Here the interest in the content curating service is on the curating processes and practices, rather than content knowledge. Couzins’ account revealed that in some cases the intermediary’s role is not about the selection of material, but in the framing of material already selected by clients for wider engagement: “People internally will decide what to share and tell you why it’s worth looking at. Basically, it’s making them look like they know what they’re talking about, building their credibility.” The content curator role here does not concern selecting content, but offering guidance on how to frame it. As such, there remains a crucial “rendering” role in which the content selected by clients becomes meaningful through the guidance and input of the professional content curator. Our interview exchange also identified another scenario of relationships in which the content curator has little involvement in either selecting or framing content. Part of the commercial activity explored in our interview included supporting staff within a client’s company to showcase their expertise and knowledge through both selecting and framing content. Specifically, as Couzins outlines, this could be undertaken as a bespoke face-to-face service with in-house training: I helped one client put a curation tool into their website enabling them to become the curators. I spent a lot of time talking to them about curation and their role as curators. We split curation into topics of interest – based on the client’s area of expertise - which would be useful both internally for personal/professional development and externally for business development by sharing content relevant for their customers. In this respect, the service provided by the content curator involves the sharing of their own curatorial expertise with clients in order that clients may undertake their own curatorial practice. There is for the client a similar concern with enhancing their social reputation and profile, but this approach stresses the expertise of clients in identifying and responding to their own content curating needs. In part this emphasis on the client’s selection of material is about the challenges of establishing and maintaining legitimacy as a content curator across several fields: “You can't begin to say you're an expert when you are not, because you'll be found out.” More than this though, it was an approach to content curating literacy. As Couzins state, “my view is that if people with the domain expertise have an interest in doing this […] then they should be doing it themselves. If you gave it to me I hold the keys to all your knowledge. Why would you want that?” The content curator and client exchange here is not restricted to gathering interests and then providing content. This scenario sees content curating as accessible, but also sees the curator in their continued role as cultural intermediary--where expertise is about mediation more than content. Returning to McFall’s comments on rendering as how things “move in and out of being economic”, our second understanding of content curating intermediaries directs attention away from what the things/content are to instead how those things move. Conclusion Set within debates and transformations around content and information abundance and filtering, this paper explored how the practices of filtering, finding, and sharing at the heart of content curating have much in common with the work of cultural intermediaries. Specifically, this paper identified two ways of understanding commercial content curating. Firstly, content curating involves the rendering of content, and the ability to succeed here relies on developing connections outside the curator-client dynamic. Secondly, professional content curators can approach their relationships with clients as one of facilitation in which the expertise of the content curating cultural intermediary does not rest with the content, but on the curating and the intermediating. References Anderson, Leon. “Analytical Autoethnography.” Journal of Contemporary Ethnography 35.4 (2006): 373-395. Andrejevic, Mark. Infoglut: How Too Much Information Is Changing the Way We Think and Know. London: Routledge, 2013. Asay, Matt. “Problem Is Filter Failure, Not Info Overload.” CNet Jan. 2009. 1 Jun. 2015 ‹http://www.cnet.com/uk/news/shirky-problem-is-filter-failure-not-info-overload/›. Bhargava, Rohit. “Manifesto for the Content Curator: The Next Big Social Media Job of the Future?” 2009. 2 June 2015. ‹http://rohitbhargava.typepad.com/weblog/2009/09/manifestoDforDtheDcontentDcuratorD theDnextDbigDsocialDmediaDjobDofDtheDfutureD.html›. Byrne, David. “David Byrne: A Great Curator Beats Any Big Company’s Algorithm.” New Statesman June 2015. 8 June 2015. ‹http://www.newstatesman.com/2015/05/man-versus-algorithm›. Coffey, Paul. The Ethnographic Self. London: Sage, 1999. The Economist. “Drowning in Numbers.” 2011. 4 June 2015 ‹http://www.economist.com/blogs/dailychart/2011/11/big-data-0›. Ellis, Carolyn, Adams, Tony E. and Bochner, Arthur P. “Autoethnography: An Overview.” Forum: Qualitative Social Research 12.1 (2011). Good, Robin. “Content Curation Tools Supermap.” Pearl Trees Apr. 2015. 4 June 2015 ‹http://www.pearltrees.com/robingood/content-curating-supermap/id5947231›. Holt, Jennifer, and Alisa Perren. “Introduction: Does the World Really Need One More Field of Study?” Media Industries: History, Theory, and Methods. Eds. Jennifer Holt and Alisa Perren. Chichester: Wiley-Blackwell, 2009. 1-16. Holt, Nicholas, L. “Representation, Legitimation, and Autoethnography: An Autoethnographic Writing Story.” International Journal of Qualitative Methods 2.1 (2003): 1-22. Internet Live Stats. 5 June 2015 ‹http://www.internetlivestats.com/one-second/›. Krysa, Joasia. Curating Immateriality: The Work of the Curator in the Age of Network Systems. New York: Autonomedia, 2006. Liu, Sophia B. “Trends in Distributed Curatorial Technology to Manage Data Deluge in a Networked World.” Upgrade: The European Journal for the Informatics Professional 11.4 (2010): 18-24. Matthews, Julian, and Jennifer Smith-Maguire. “Introduction: Thinking with Cultural Intermediaries.” The Cultural Intermediaries Reader. Eds. Julian Matthews and Jennifer Smith-Maguire. London: Sage, 2014. 1-11. McFall, Liz. “The Problem of Cultural Intermediaries in the Economy of Qualities.” The Cultural Intermediaries Reader. Eds. Julian Matthews and Jennifer Smith-Maguire. London: Sage, 2014. 42-51. Popova, Maria. “In a New World of Informational Abundance, Content Curation Is a New Kind of Authorship.” Nieman Lab June 2011. 6 Jun 2015 ‹http://www.niemanlab.org/2011/06/maria-popova-in-a-new-world-of-informational-abundance-content-curation-is-a-new-kind-of-authorship/›. Potter, John, and Øystein Gilje. “Curatorship as a New Literacy Practice.” E-Learning and Digital Media 12.2 (2015): 123-127. Reed-Danahay, Deborah. Auto/Ethnography. New York: Berg, 1997. Rosenbaum, Steve. Curating Nation: How to Win in a World Where Consumers Are Creators. New York: McGraw-Hill Professional, 2011. Smith-Maguire, Jennifer, and Julian Matthews. “Are We All Cultural Intermediaries Now?” European Journal of Cultural Studies 15.5 (2012): 551-562. Sun, Will. “Introducing LinkedIn Elevate: Helping Companies Empower Their Employees to Share Content.” Apr. 2015. 29 May 2015 ‹http://blog.linkedin.com/2015/04/13/elevate/›. Villi, Mikko. “Social Curation in Audience Communities: UDC (User-Distributed Content) in the Networked Media Ecosystem.” Participations 9.2 (2012): 614-632.
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Fineman, Daniel. "The Anomaly of Anomaly of Anomaly." M/C Journal 23, no. 5 (2020). http://dx.doi.org/10.5204/mcj.1649.

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‘Bitzer,’ said Thomas Gradgrind. ‘Your definition of a horse.’‘Quadruped. Graminivorous. Forty teeth, namely twenty-four grinders, four eye-teeth, and twelve incisive. Sheds coat in the spring; in marshy countries, sheds hoofs, too. Hoofs hard, but requiring to be shod with iron. Age known by marks in mouth.’ Thus (and much more) Bitzer.‘Now girl number twenty,’ said Mr. Gradgrind. ‘You know what a horse is.’— Charles Dickens, Hard Times (1854)Dickens’s famous pedant, Thomas Gradgrind, was not an anomaly. He is the pedagogical manifestation of the rise of quantification in modernism that was the necessary adjunct to massive urbanisation and industrialisation. His classroom caricatures the dominant epistemic modality of modern global democracies, our unwavering trust in numbers, “data”, and reproductive predictability. This brief quotation from Hard Times both presents and parodies the 19th century’s displacement of what were previously more commonly living and heterogeneous existential encounters with events and things. The world had not yet been made predictably repetitive through industrialisation, standardisation, law, and ubiquitous codes of construction. Theirs was much more a world of unique events and not the homogenised and orthodox iteration of standardised knowledge. Horses and, by extension, all entities and events gradually were displaced by their rote definitions: individuals of a so-called natural kind were reduced to identicals. Further, these mechanical standardisations were and still are underwritten by mapping them into a numerical and extensive characterisation. On top of standardised objects and procedures appeared assigned numerical equivalents which lent standardisation the seemingly apodictic certainty of deductive demonstrations. The algebraic becomes the socially enforced criterion for the previously more sensory, qualitative, and experiential encounters with becoming that were more likely in pre-industrial life. Here too, we see that the function of this reproductive protocol is not just notational but is the sine qua non for, in Althusser’s famous phrase, the manufacture of citizens as “subject subjects”, those concrete individuals who are educated to understand themselves ideologically in an imaginary relation with their real position in any society’s self-reproduction. Here, however, ideology performs that operation through that nominally least political of cognitive modes, the supposed friend of classical Marxism’s social science, the mathematical. The historical onset of this social and political reproductive hegemony, this uniform supplanting of time’s ineluctable differencing with the parasite of its associated model, can partial be found in the formation of metrics. Before the 19th century, the measures of space and time were local. Units of length and weight varied not just between nations but often by municipality. These parochial standards reflected indigenous traditions, actualities, personalities, and needs. This variation in measurement standards suggested that every exchange or judgment of kind and value relied upon the specificity of that instance. Every evaluation of an instance required perceptual acuity and not the banality of enumeration constituted by commodification and the accounting practices intrinsic to centralised governance. This variability in measure was complicated by similar variability in the currencies of the day. Thus, barter presented the participants with complexities and engagements of skills and discrete observation completely alien to the modern purchase of duplicate consumer objects with stable currencies. Almost nothing of life was iterative: every exchange was, more or less, an anomaly. However, in 1790, immediately following the French Revolution and as a central manifestation of its movement to rational democratisation, Charles Maurice de Talleyrand proposed a metrical system to the French National Assembly. The units of this metric system, based originally on observable features of nature, are now formally codified in all scientific practice by seven physical constants. Further, they are ubiquitous now in almost all public exchanges between individuals, corporations, and states. These units form a coherent and extensible structure whose elements and rules are subject to seemingly lossless symbolic exchange in a mathematic coherence aided by their conformity to decimal representation. From 1960, their basic contemporary form was established as the International System of Units (SI). Since then, all but three of the countries of the world (Myanmar, Liberia, and the United States), regardless of political organisation and individual history, have adopted these standards for commerce and general measurement. The uniformity and rational advantage of this system is easily demonstrable in just the absurd variation in the numeric bases of the Imperial / British system which uses base 16 for ounces/pounds, base 12 for inches/feet, base three for feet/yards, base 180 for degrees between freezing and cooling, 43,560 square feet per acre, eights for division of inches, etc. Even with its abiding antagonism to the French, Britain officially adopted the metric system as was required by its admission to the EU in 1973. The United States is the last great holdout in the public use of the metric system even though SI has long been the standard wanted by the federal government. At first, the move toward U.S. adoption was promising. Following France and rejecting England’s practice, America was founded on a decimal currency system in 1792. In 1793, Jefferson requested a copy of the standard kilogram from France in a first attempt to move to the metric system: however, the ship carrying the copy was captured by pirates. Indeed, The Metric Conversion Act of 1975 expressed a more serious national intention to adopt SI, but after some abortive efforts, the nation fell back into the more archaic measurements dominant since before its revolution. However, the central point remains that while the U.S. is unique in its public measurement standard among dominant powers, it is equally committed to the hegemonic application of a numerical rendition of events.The massive importance of this underlying uniformity is that it supplies the central global mechanism whereby the world’s chaotic variation is continuously parsed and supplanted into comparable, intelligible, and predictable units that understand individuating difference as anomaly. Difference, then, is understood in this method not as qualitative and intensive, which it necessarily is, but quantitative and extensive. Like Gradgrind’s “horse”, the living and unique thing is rendered through the Apollonian dream of standardisation and enumeration. While differencing is the only inherent quality of time’s chaotic flow, accounting and management requite iteration. To order the reproduction of modern society, the unique individuating differences that render an object as “this one”, what the Medieval logicians called haecceities, are only seen as “accidental” and “non-essential” deviations. This is not just odd but illogical since these very differences allow events to be individuated items so to appear as countable at all. As Leibniz’s principle, the indiscernibility of identicals, suggests, the application of the metrical same to different occasions is inherently paradoxical: if each unit were truly the same, there could only be one. As the etymology of “anomaly” suggests, it is that which is unexpected, irregular, out of line, or, going back to the Greek, nomos, at variance with the law. However, as the only “law” that always is at hand is the so-called “Second Law of Thermodynamics”, the inconsistently consistent roiling of entropy, the evident theoretical question might be, “how is anomaly possible when regularity itself is impossible?” The answer lies not in events “themselves” but exactly in the deductive valorisations projected by that most durable invention of the French Revolution adumbrated above, the metric system. This seemingly innocuous system has formed the reproductive and iterative bias of modern post-industrial perceptual homogenisation. Metrical modeling allows – indeed, requires – that one mistake the metrical changeling for the experiential event it replaces. Gilles Deleuze, that most powerful French metaphysician (1925-1995) offers some theories to understand the seminal production (not reproduction) of disparity that is intrinsic to time and to distinguish it from its homogenised representation. For him, and his sometime co-author, Felix Guattari, time’s “chaosmosis” is the host constantly parasitised by its symbolic model. This problem, however, of standardisation in the face of time’s originality, is obscured by its very ubiquity; we must first denaturalise the seemingly self-evident metrical concept of countable and uniform units.A central disagreement in ancient Greece was between the proponents of physis (often translated as “nature” but etymologically indicative of growth and becoming, process and not fixed form) and nomos (law or custom). This is one of the first ethical and so political debates in Western philosophy. For Heraclitus and other pre-Socratics, the emphatic character of nature was change, its differencing dynamism, its processual but not iterative character. In anticipation of Hume, Sophists disparaged nomos (νόμος) as simply the habituated application of synthetic law and custom to the fluidity of natural phenomena. The historical winners of this debate, Plato and the scientific attitudes of regularity and taxonomy characteristic of his best pupil, Aristotle, have dominated ever since, but not without opponents.In the modern era, anti-enlightenment figures such as Hamann, Herder, and the Schlegel brothers gave theoretical voice to romanticism’s repudiation of the paradoxical impulses of the democratic state for regulation and uniformity that Talleyrand’s “revolutionary” metrical proposal personified. They saw the correlationalism (as adumbrated by Meillassoux) between thought and thing based upon their hypothetical equitability as a betrayal of the dynamic physis that experience presented. Variable infinity might come either from the character of God or nature or, as famously in Spinoza’s Ethics, both (“deus sive natura”). In any case, the plenum of nature was never iterative. This rejection of metrical regularity finds its synoptic expression in Nietzsche. As a classicist, Nietzsche supplies the bridge between the pre-Socratics and the “post-structuralists”. His early mobilisation of the Apollonian, the dream of regularity embodied in the sun god, and the Dionysian, the drunken but inarticulate inexpression of the universe’s changing manifold, gives voice to a new resistance to the already dominate metrical system. His is a new spin of the mythic representatives of Nomos and physis. For him, this pair, however, are not – as they are often mischaracterised – in dialectical dialogue. To place them into the thesis / antithesis formulation would be to give them the very binary character that they cannot share and to, tacitly, place both under Apollo’s procedure of analysis. Their modalities are not antithetical but mutually exclusive. To represent the chaotic and non-iterative processes of becoming, of physis, under the rubric of a common metrics, nomos, is to mistake the parasite for the host. In its structural hubris, the ideological placebo of metrical knowing thinks it non-reductively captures the multiplicity it only interpellates. In short, the polyvalent, fluid, and inductive phenomena that empiricists try to render are, in their intrinsic character, unavailable to deductive method except, first, under the reductive equivalence (the Gradgrind pedagogy) of metrical modeling. This incompatibility of physis and nomos was made manifest by David Hume in A Treatise of Human Nature (1739-40) just before the cooptation of the 18th century’s democratic revolutions by “representative” governments. There, Hume displays the Apollonian dream’s inability to accurately and non-reductively capture a phenomenon in the wild, free from the stringent requirements of synthetic reproduction. His argument in Book I is succinct.Now as we call every thing custom, which proceeds from a past repetition, without any new reasoning or conclusion, we may establish it as a certain truth, that all the belief, which follows upon any present impression, is deriv'd solely from that origin. (Part 3, Section 8)There is nothing in any object, consider'd in itself, which can afford us a reason for drawing a conclusion beyond it; ... even after the observation of the frequent or constant conjunction of objects, we have no reason to draw any inference concerning any object beyond those of which we have had experience. (Part 3, Section 12)The rest of mankind ... are nothing but a bundle or collection of different perceptions, which succeed each other with an inconceivable rapidity, and are in a perpetual flux and movement. (Part 4, Section 6)In sum, then, nomos is nothing but habit, a Pavlovian response codified into a symbolic representation and, pragmatically, into a reproductive protocol specifically ordered to exclude anomaly, the inherent chaotic variation that is the hallmark of physis. The Apollonian dream that there can be an adequate metric of unrestricted natural phenomena in their full, open, turbulent, and manifold becoming is just that, a dream. Order, not chaos, is the anomaly. Of course, Kant felt he had overcome this unacceptable challenge to rational application to induction after Hume woke him from his “dogmatic slumber”. But what is perhaps one of the most important assertions of the critiques may be only an evasion of Hume’s radical empiricism: “there are only two ways we can account for the necessary agreement of experience with the concepts of its objects: either experience makes these concepts possible or these concepts make experience possible. The former supposition does not hold of the categories (nor of pure sensible intuition) ... . There remains ... only the second—a system ... of the epigenesis of pure reason” (B167). Unless “necessary agreement” means the dictatorial and unrelenting insistence in a symbolic model of perception of the equivalence of concept and appearance, this assertion appears circular. This “reading” of Kant’s evasion of the very Humean crux, the necessary inequivalence of a metric or concept to the metered or defined, is manifest in Nietzsche.In his early “On Truth and Lies in a Nonmoral Sense” (1873), Nietzsche suggests that there is no possible equivalence between a concept and its objects, or, to use Frege’s vocabulary, between sense or reference. We speak of a "snake" [see “horse” in Dickens]: this designation touches only upon its ability to twist itself and could therefore also fit a worm. What arbitrary differentiations! What one-sided preferences, first for this, then for that property of a thing! The various languages placed side by side show that with words it is never a question of truth, never a question of adequate expression; otherwise, there would not be so many languages. The "thing in itself" (which is precisely what the pure truth, apart from any of its consequences, would be) is likewise something quite incomprehensible to the creator of language and something not in the least worth striving for. This creator only designates the relations of things to men, and for expressing these relations he lays hold of the boldest metaphors.The literal is always already a reductive—as opposed to literature’s sometimes expansive agency—metaphorisation of events as “one of those” (a token of “its” type). The “necessary” equivalence in nomos is uncovered but demanded. The same is reproduced by the habitual projection of certain “essential qualities” at the expense of all those others residing in every experiential multiplicity. Only in this prison of nomos can anomaly appear: otherwise all experience would appear as it is, anomalous. With this paradoxical metaphor of the straight and equal, Nietzsche inverts the paradigm of scientific expression. He reveals as a repressive social and political obligation the symbolic assertion homology where actually none can be. Supposed equality and measurement all transpire within an Apollonian “dream within a dream”. The concept captures not the manifold of chaotic experience but supplies its placebo instead by an analytic tautology worthy of Gradgrind. The equivalence of event and definition is always nothing but a symbolic iteration. Such nominal equivalence is nothing more than shifting events into a symbolic frame where they can be commodified, owned, and controlled in pursuit of that tertiary equivalence which has become the primary repressive modality of modern societies: money. This article has attempted, with absurd rapidity, to hint why some ubiquitous concepts, which are generally considered self-evident and philosophically unassailable, are open not only to metaphysical, political, and ethical challenge, but are existentially unjustified. All this was done to defend the smaller thesis that the concept of anomaly is itself a reflection of a global misrepresentation of the chaos of becoming. This global substitution expresses a conservative model and measure of the world in the place of the world’s intrinsic heterogenesis, a misrepresentation convenient for those who control the representational powers of governance. In conclusion, let us look, again too briefly, at a philosopher who neither accepts this normative world picture of regularity nor surrenders to Nietzschean irony, Gilles Deleuze.Throughout his career, Deleuze uses the word “pure” with senses antithetical to so-called common sense and, even more, Kant. In its traditional concept, pure means an entity or substance whose essence is not mixed or adulterated with any other substance or material, uncontaminated by physical pollution, clean and immaculate. The pure is that which is itself itself. To insure intelligibility, that which is elemental, alphabetic, must be what it is itself and no other. This discrete character forms the necessary, if often tacit, precondition to any analysis and decomposition of beings into their delimited “parts” that are subject to measurement and measured disaggregation. Any entity available for structural decomposition, then, must be pictured as constituted exhaustively by extensive ones, measurable units, its metrically available components. Dualism having established as its primary axiomatic hypothesis the separability of extension and thought must now overcome that very separation with an adequacy, a one to one correspondence, between a supposedly neatly measurable world and ideological hegemony that presents itself as rational governance. Thus, what is needed is not only a purity of substance but a matching purity of reason, and it is this clarification of thought, then, which, as indicated above, is the central concern of Kant’s influential and grand opus, The Critique of Pure Reason.Deleuze heard a repressed alternative to the purity of the measured self-same and equivalent that, as he said about Plato, “rumbled” under the metaphysics of analysis. This was the dark tradition he teased out of the Stoics, Ockham, Gregory of Rimini, Nicholas d’Autrecourt, Spinoza, Meinong, Bergson, Nietzsche, and McLuhan. This is not the purity of identity, A = A, of metrical uniformity and its shadow, anomaly. Rather than repressing, Deleuze revels in the perverse purity of differencing, difference constituted by becoming without the Apollonian imposition of normalcy or definitional identity. One cannot say “difference in itself” because its ontology, its genesis, is not that of anything itself but exactly the impossibility of such a manner of constitution: universal anomaly. No thing or idea can be iterative, separate, or discrete.In his Difference and Repetition, the idea of the purely same is undone: the Ding an sich is a paradox. While the dogmatic image of thought portrays the possibility of the purely self-same, Deleuze never does. His notions of individuation without individuals, of modulation without models, of simulacra without originals, always finds a reflection in his attitudes toward, not language as logical structure, but what necessarily forms the differential making of events, the heterogenesis of ontological symptoms. His theory has none of the categories of Pierce’s triadic construction: not the arbitrary of symbols, the “self-representation” of icons, or even the causal relation of indices. His “signs” are symptoms: the non-representational consequences of the forces that are concurrently producing them. Events, then, are the symptoms of the heterogenetic forces that produce, not reproduce them. To measure them is to export them into a representational modality that is ontologically inapplicable as they are not themselves themselves but the consequences of the ongoing differences of their genesis. Thus, the temperature associated with a fever is neither the body nor the disease.Every event, then, is a diaphora, the pure consequent of the multiplicity of the forces it cannot resemble, an original dynamic anomaly without standard. This term, diaphora, appears at the conclusion of that dialogue some consider Plato’s best, the Theaetetus. There we find perhaps the most important discussion of knowledge in Western metaphysics, which in its final moments attempts to understand how knowledge can be “True Judgement with an Account” (201d-210a). Following this idea leads to a theory, usually known as the “Dream of Socrates”, which posits two kinds of existents, complexes and simples, and proposes that “an account” means “an account of the complexes that analyses them into their simple components … the primary elements (prôta stoikheia)” of which we and everything else are composed (201e2). This—it will be noticed—suggests the ancient heritage of Kant’s own attempted purification of mereological (part/whole relations) nested elementals. He attempts the coordination of pure speculative reason to pure practical reason and, thus, attempts to supply the root of measurement and scientific regularity. However, as adumbrated by the Platonic dialogue, the attempted decompositions, speculative and pragmatic, lead to an impasse, an aporia, as the rational is based upon a correspondence and not the self-synthesis of the diaphorae by their own dynamic disequilibrium. Thus the dialogue ends inconclusively; Socrates rejects the solution, which is the problem itself, and leaves to meet his accusers and quaff his hemlock. The proposal in this article is that the diaphorae are all that exists in Deleuze’s world and indeed any world, including ours. Nor is this production decomposable into pure measured and defined elementals, as such decomposition is indeed exactly opposite what differential production is doing. For Deleuze, what exists is disparate conjunction. But in intensive conjunction the same cannot be the same except in so far as it differs. The diaphorae of events are irremediably asymmetric to their inputs: the actual does not resemble the virtual matrix that is its cause. Indeed, any recourse to those supposedly disaggregate inputs, the supposedly intelligible constituents of the measured image, will always but repeat the problematic of metrical representation at another remove. This is not, however, the traditional postmodern trap of infinite meta-shifting, as the diaphoric always is in each instance the very presentation that is sought. Heterogenesis can never be undone, but it can be affirmed. In a heterogenetic monism, what was the insoluble problem of correspondence in dualism is now its paradoxical solution: the problematic per se. What manifests in becoming is not, nor can be, an object or thought as separate or even separable, measured in units of the self-same. Dogmatic thought habitually translates intensity, the differential medium of chaosmosis, into the nominally same or similar so as to suit the Apollonian illusions of “correlational adequacy”. However, as the measured cannot be other than a calculation’s placebo, the correlation is but the shadow of a shadow. Every diaphora is an event born of an active conjunction of differential forces that give rise to this, their product, an interference pattern. Whatever we know and are is not the correlation of pure entities and thoughts subject to measured analysis but the confused and chaotic confluence of the specific, material, aleatory, differential, and unrepresentable forces under which we subsist not as ourselves but as the always changing product of our milieu. In short, only anomaly without a nominal becomes, and we should view any assertion that maps experience into the “objective” modality of the same, self-evident, and normal as a political prestidigitation motivated, not by “truth”, but by established political interest. ReferencesDella Volpe, Galvano. Logic as a Positive Science. London: NLB, 1980.Deleuze, Gilles. Difference and Repetition. Trans. Paul Patton. New York: Columbia UP, 1994.———. The Logic of Sense. Trans. Mark Lester. New York: Columbia UP, 1990.Guenon, René. The Reign of Quantity. New York: Penguin, 1972.Hawley, K. "Identity and Indiscernibility." Mind 118 (2009): 101-9.Hume, David. A Treatise of Human Nature. Oxford: Clarendon, 2014.Kant, Immanuel. Critique of Pure Reason. Trans. Norman Kemp Smith. London: Palgrave Macmillan, 1929.Meillassoux, Quentin. After Finitude: An Essay on the Necessity of Contingency. Trans. Ray Brassier. New York: Continuum, 2008.Naddaf, Gerard. The Greek Concept of Nature. Albany: SUNY, 2005. Nietzsche, Friedrich. The Birth of Tragedy. Trans. Douglas Smith. Oxford: Oxford UP, 2008.———. “On Truth and Lies in a Nonmoral Sense.” Trans. Walter Kaufmann. The Portable Nietzsche. New York: Viking, 1976.Welch, Kathleen Ethel. "Keywords from Classical Rhetoric: The Example of Physis." Rhetoric Society Quarterly 17.2 (1987): 193–204.
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Brennan-Horley, Chris. "Reappraising the Role of Suburban Workplaces in Darwin’s Creative Economy." M/C Journal 14, no. 4 (2011). http://dx.doi.org/10.5204/mcj.356.

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IntroductionTraditionally, suburbs have been conceived as dormitory – in binary opposition to the inner-city (Powell). Supporting this stereotypical view have been gendered binaries between inner and outer city areas; densely populated vs. sprawl; gentrified terraces and apartment culture vs. new estates and first home buyers; zones of (male) production and creativity against (female) sedate, consumer territory. These binaries have for over a decade been thoroughly criticised by urban researchers, who have traced such representations and demonstrated how they are discriminatory and incorrect (see Powell; Mee; Dowling and Mee). And yet, such binaries persist in popular media commentaries and even in academic research (Gibson and Brennan-Horley). In creative city research, inner-city areas have been bestowed with the supposed correct mix of conditions that may lead to successful creative ventures. In part, this discursive positioning has been borne out of prior attempts to mapthe location of creativity in the city. Existing research on the geography of creativity in the city have relied on proxy data forms: mapping data on firms and/or employment in the creative industry sectors (e.g. Gibson, Murphy and Freestone; Markusen et al.; Watson). In doing so, the focus has rested on “winners” – i.e. headquarters of major arts and cultural institutions located in inner city/CBD locations, or by looking for concentrations of registered creative businesses. Such previous studies are useful because they give some indication of the geographical spread and significance of creative activities in cities, and help answer questions about the locational preferences of creative industries, including their gravitational pull towards each other in an agglomerative sense (Scott). However, such studies rely on (usually) one proxy data source to reveal the presence of creative activities, rather than detail how creativity is itself apparent in everyday working lives, or embedded in the spaces, networks and activities of the city. The latter, more qualitative aspects of the lived experience of creativity can only at best be inferred from proxy data such as employment numbers and firm location. In contrast, other researchers have promoted ethnographic methods (Drake; Shorthose; Felton, Collis and Graham) including interviewing, snowballing through contacts and participant observation, as means to get ‘inside’ creative industries and to better understand their embeddedness in place and networks of social relations. Such methods provide rich explanation of the internal dynamics and social logics of creative production, but having stemmed from text-based recorded interviews, they produce data without geographical co-ordinates necessary to be mapped in the manner of employment or business location data – and thus remain comparatively “aspatial”, with no georeferenced component. Furthermore, in such studies relational interactions with material spaces of home, work and city are at best conveyed in text form only – from recorded interviews – and thus cannot be aggregated easily as a mapped representation of city life. This analysis takes a different tack, by mapping responses from interviews, which were then analysed using methods more common in mapping and analysing proxy data sources. By taking a qualitative route toward data collection, this paper illustrates how suburbs can actually play a major role in creative city economies, expanding understandings of what constitutes a creative workplace and examining the resulting spatial distributions according to their function. Darwin and the Creative Tropical City Project This article draws on fieldwork carried out in Darwin, NT a small but important city in Australia’s tropical north. It is the government and administration capital of the sparsely populated Northern Territory and continues to grapple with its colonial past, a challenging climate, small population base and remoteness from southern centres. The city’s development pattern is relatively new, even in Australian terms, only dating back to the late 1970s. After wholesale destruction by Cyclone Tracy, Darwin was rebuilt displaying the hallmarks of post-1970 planning schemes: wide ring-roads and cul-de-sacs define its layout, its urban form dominated by stout single-story suburban dwellings built to withstand cyclonic activity. More recently, Darwin has experienced growth in residential tower block apartments, catering to the city’s high degree of fly-in, fly-out labour market of mining, military and public service workers. These high rise developments have been focussed unsurprisingly on coastal suburbs with ample sections of foreshore. Further adding to its peculiar layout, the geographic centre is occupied by Darwin Airport (a chief military base for Australia’s northern frontier) splitting the northern suburbs from those closer to its small CBD, itself jutting to the south on a peninsula. Lacking then in Darwin are those attributes so often heralded as the harbingers of a city’s creative success – density, walkability, tracts of ex-industrial brownfields sites ripe for reinvention as creative precincts. Darwin is a city dominated by its harsh tropical climate, decentralised and overtly dependant on private car transport. But, if one cares to look beyond the surface, Darwin is also a city punching above its weight on account of the unique possibilities enabled by transnational Asian proximity and its unique role as an outlet for indigenous creative work from across the top of the continent (Luckman, Gibson and Lea). Against this backdrop, Creative Tropical City: Mapping Darwin’s Creative Industries (CTC), a federally funded ARC project from 2006 to 2009, was envisaged to provide the evidential base needed to posit future directions for Darwin’s creative industries. City and Territory leaders had by 2004 become enchanted by the idea of ‘the creative city’ (Landry) – but it is questionable how well these policy discourses travel when applied to disparate examples such as Darwin (Luckman, Gibson and Lea). To provide an empirical grounding to creative city ideas and to ensure against policy fetishism the project was developed to map the nature, extent and change over time of Darwin’s creative industries and imagine alternate futures for the city based on a critical appraisal of the applicability of national and international creative industry policy frameworks to this remote, tropical location (Lea et al.). Toward a Typology of Darwin’s Creative Workplaces This article takes one data set gathered during the course of the CTC project, based around a participatory mapping exercise, where interviewees responded to questions about where creative industry activities took place in Darwin by drawing on paper maps. Known as mental maps, these were used to gather individual representations of place (Tuan), but in order to extend their applicability for spatial querying, responses were transferred to a Geographic Information System (GIS) for storage, collation and analysis (Matei et al.). During semi-structured interviews with 98 Darwin-based creative industry practitioners, participants were provided with a base map of Darwin displaying Statistical Local Area (SLA) boundaries and roads for mark up in response to specific questions about where creative activities occurred (for more in depth discussion of this method and its varied outputs, refer to Brennan-Horley and Gibson). The analysis discussed here only examines answers to one question: “Where do you work?” This question elicited a total of 473 work locations from 98 respondents – a fourfold increase over statistics gleaned from employment measures alone (Brennan-Horley). Such an increase resulted from participants identifying their everyday work practices which, by necessity, took place across multiple locations. When transferring the spatial location of workplaces into the GIS, each site was coded depending on whether it was cited by the interviewee as their “major” or primary place of work, or if the place being discussed played a secondary or “minor” role in their creative practice. For example, an artist’s studio was categorised as major, but other minor sites also featured in their mental maps, for example, galleries, supply locations and teaching sites. Each worksite was then assigned to one of four categories: Front, Back, Networking and Supply (Table 1). In a similar fashion to McCannell’s work on the “front and back regions” of tourist towns (597), the creative industries, predicated on the production and exchange of texts, objects and ideas also display front spaces of sorts – sites that facilitate interactions between practitioner and audiences, spaces for performance and consumption. Operating behind these front spaces, are sites where creative endeavours take place – perhaps not as so readily seen or engaged with by wider publics. For example, a rehearsal room, artist’s studio or a theatre company’s office may not be key sites of interaction between creator and audience but remain nonetheless important sites of creative work. However, a binary of Front versus Back could not encapsulate the variety of other everyday, prosaic work sites evident in the data. Participants indicated on their maps visits to the post office to send artworks, going to Bunnings to buy paint (and inadvertently networking with others), through to more fleeting spaces such as artist materials fossicked from parklands to photoshoot locations. These supply sites (each themselves positioned along a continuum of “creative” to “mundane”) were typified as supply locations: sites that act as places to gather inputs into the creative process. Finally, sites where meetings and networking took place (more often than not, these were indicated by participants as occurring away from their major work place) were assigned under a heading of networking spaces. Table 1: A typology of creative workplaces Space Definition Coded examples Front A space for consumption/exchange of creative goods, outputs or expertise. Performance space, Market, Gallery, Client Location, Shopfront, Cinema, Exhibition space, Museum, Festival space Back A site of production, practice or business management Office, Studio, Rehearsal Space, Teaching Space, Factory, Recording Studio Networking A space to meet clients or others involved in creative industries Meeting places Supply Spaces where supplies for creative work are sourced Supplier, Photoshoot Location, Story Location, Shoot Location, Storage Coding data into discrete units and formulating a typology is a reductive process, thus a number of caveats apply to this analysis. First there were numerous cases where worksites fell across multiple categories. This was particularly the case with practitioners from the music and performing arts sector whose works are created and consumed at the same location, or a clothing designer whose studio is also their shopfront. To avoid double counting, these cases were assigned to one category only, usually split in favour of the site’s main function (i.e. performance sites to Front spaces). During interviews, participants were asked to locate parts of Darwin they went to for work, rather than detail the exact role or name for each of those spaces. While most participants were forthcoming and descriptive in their responses, in two percent of cases (n=11) the role of that particular space was undefined. These spaces were placed into the “back” category. Additionally, the data was coded to refer to individual location instances aggregated to the SLA level, and does not take into account the role of specific facilities within suburbs, even though certain spaces were referred to regularly in the transcripts. It was often the case that a front space for one creative industry practitioner was a key production site for another, or operated simultaneously as a networking site for both. Future disaggregated analyses will tease out the important roles that individual venues play in Darwin’s creative economy, but are beyond this article’s scope. Finally, this analysis is only a snapshot in time, and captures some of the ephemeral and seasonal aspects of creative workplaces in Darwin that occurred around the time of interviewing. To illustrate, there are instances of photographers indicating photo shoot locations, sites that may only be used once, or may be returned to on multiple occasions. As such, if this exercise were to be carried out at another time, a different geography may result. Results A cross-tabulation of the workplace typology against major and minor locations is given in Table 2. Only 20 per cent of worksites were designated as major worksites with the remaining 80 per cent falling into the minor category. There was a noticeable split between Back and Front spaces and their Major/Minor designation. 77 per cent of back spaces were major locations, while the majority of Front spaces (92 per cent) fell into the minor category. The four most frequently occurring Minor Front spaces – client location, performance space, markets and gallery – collectively comprise one third of all workplaces for participants, pointing to their important role as interfacing spaces between creative output produced or worked on elsewhere, and wider publics/audiences. Understandably, all supply sites and networking places were categorised as minor, with each making up approximately 20 per cent of all workplaces. Table 2: creative workplaces cross tabulated against primary and secondary workplaces and divided by creative workplace typology. Major Minor Grand Total Back Office 44 1 45 Studio 22 - 22 Rehearsal Space 7 11 18 Undefined - 11 11 Teaching Space 3 1 4 Factory 1 - 1 Recording Studio 1 - 1 Leanyer Swamp 1 - 1 Back space total 79 24 103 Front Client Location - 70 70 Performance Space 2 67 69 Market 1 11 12 Gallery 3 8 11 Site - 8 8 Shopfront 1 3 4 Exhibition Space - 3 3 Cinema 2 1 3 Museum 1 1 2 Shop/Studio 1 - 1 Gallery and Office 1 - 1 NightClub 1 - 1 Festival space - 1 1 Library 1 - 1 Front Space total 14 173 187 Networking Meeting Place - 94 94 Networking space total - 94 94 Supply Supplier - 52 52 Photoshoot Location - 14 14 Story Location - 9 9 Shoot Location - 7 7 Storage - 4 4 Bank - 1 1 Printer - 1 1 Supply Space total - 88 88 Grand Total 93 379 472 The maps in Figures 1 through 4 analyse the results spatially, with individual SLA scores provided in Table 3. The maps use location quotients, representing the diversion of each SLA from the city-wide average. Values below one represent a less than average result, values greater than one reflecting higher results. The City-Inner SLA maintains the highest overall percentage of Darwin’s creative worksites (35 per cent of the total) across three categories, Front, Back and especially Networking sites (60 per cent). The concentration of key arts institutions, performance spaces and CBD office space is the primary reason for this finding. Additionally, the volume of hospitality venues in the CBD made it an amenable place to conduct meetings away from major back spaces. Figure 1: Back spaces by Statistical Local Areas Figure 2: Front spaces by Statistical Local Areas Figure 3: Networking sites, by Statistical Local Areas Figure 4: Supply sites by Statistical Local Areas However this should not deter from the fact that the majority of all worksites (65 per cent) indicated by participants actually reside in suburban locations. Numerically, the vast majority (70 per cent) of Darwin’s Front spaces are peppered across the suburbs, with agglomerations occurring in The Gardens, Fannie Bay, Nightcliff and Parap. The Gardens is the location for Darwin’s biggest weekly market (Mindl Beach night market), and a performance space for festivals and events during the city’s long dry season. Mirroring more the cultures of its neighbouring SE Asian counterparts, Darwin sustains a vibrant market culture unlike that of any other Australian capital city. As the top end region is monsoonal, six months of the year is guaranteed to be virtually rain free, allowing for outdoor activities such as markets and festivals to flourish. Markets in Darwin have a distinctly suburban geography with each of the three top suburban SLAs (as measured by Front spaces) hosting a regular market, each acting as temporary sites of networking and encounter for creative producers and audiences. Importantly, over half of the city’s production sites (Back spaces) were dispersed across the suburbs in two visible arcs, one extending from the city taking in Fannie Bay and across to Winnellie via Parap, and through the northern coastal SLAs from Coconut Grove to Brinkin (Figure 1). Interestingly, 85 per cent of all supply points were also in suburban locations. Figure 4 maps this suburban specialisation, with the light industrial suburb of Winnellie being the primary location for Darwin’s creative practitioners to source supplies. Table 3: Top ten suburbs by workplace mentions, tabulated by workplace type* SLA name Front Back Networking Supply Workplace total Inner City/CBD City - Inner 56 (29.9%) 35 (36%) 57 (60.6%) 13 (14.8%) 162 (34.3%) Inner City Total 56 (29.9%) 35 (36%) 57 (60.6%) 13 (14.8%) 162 (34.3%) Top 10 suburban The Gardens 30 (16%) 3 (2.9%) 6 (6.4%) 5 (5.7%) 44 (9.3%) Winnellie 3 (1.6%) 7 (6.8%) 1 (1.1%) 24 (27.3%) 35 (7.4%) Parap 14 (7.5%) 4 (3.9%) 6 (6.4%) 9 (10.2%) 33 (7%) Fannie Bay 17 (9.1%) 5 (4.9%) 4 (4.3%) 2 (2.3%) 28 (5.9%) Nightcliff 14 (7.5%) 7 (6.8%) 2 (2.1%) 4 (4.5%) 27 (5.7%) Stuart Park 4 (2.1%) 8 (7.8%) 4 (4.3%) 4 (4.5%) 20 (4.2%) Brinkin 1 (0.5%) 8 (7.8%) 9 (9.6%) 2 (2.3%) 20 (4.2%) Larrakeyah 5 (2.7%) 5 (4.9%) 1 (1.1%) 3 (3.4%) 14 (3%) City - Remainder 5 (2.7%) 2 (1.9%) 0 (0%) 6 (6.8%) 13 (2.8%) Coconut Grove 3 (1.6%) 4 (3.9%) 1 (1.1%) 4 (4.5%) 12 (2.5%) Rapid Creek 3 (1.6%) 6 (5.8%) 0 (0%) 0 (0%) 9 (1.9%) Suburban Total** 131 (70.1%) 67 (65%) 37 (39.4%) 75 (85%) 310 (65.7%) City-Wide Total 187 103 94 88 472 *All percentages calculated from city- wide total **Suburban total row includes all 27 suburbs, not just top tens Discussion There are two key points to take from this analysis. First, the results show the usefulness of combining in-depth qualitative research with GIS mapping methods. Interviewing creative workers about where activities in their working days (or nights) take place, rather than defaulting to incomplete industry statistics can reveal a more comprehensive view of where creative work manifests in the city. Second, the role that multiple, decentred and often suburban facilities played as sites of supply, production and consumption in Darwin’s creative economy leads theories about the spatiality of creativity in the city in new directions. These results clearly show that the cultural binaries that theorists have assumed shape perceptions of the city and its suburbs do not appear in this instance to be infusing the everyday nature of creative work in the city. What was revealed by this data is that creative work in the city creates a variegated city produced through practitioners’ ordinary daily activities. Creative workers are not necessarily resisting or reinventing ideas of what the suburbs mean, they are getting on with creative work in ways that connect suburbs and the city centre in complex – and yet sometimes quite prosaic – ways. This is not to say that the suburbs do not present challenges for the effective conduct of creative work in Darwin – transport availability and lack of facilities were consistently cited problems by practitioners – but instead what is argued here is that ways of understanding the suburbs (in popular discourse, and in response in critical cultural theory) that emanate from Sydney or Los Angeles do not provide a universal conceptual framework for a city like Darwin. By not presuming that there is a meta-discourse of suburbs and city centres that everyone in every city is bound to, this analysis captured a different geography. In conclusion, the case of Darwin displayed decentred and dispersed sites of creativity as the norm rather than the exception. Accordingly, creative city planning strategies should take into account that decentralised and varied creative work sites exist beyond the purview of flagship institutions and visible creative precincts. References Brennan-Horley, Chris. “Multiple Work Sites and City-Wide Networks: A Topological Approach to Understanding Creative Work.” Australian Geographer 41 (2010): 39-56. ———, and Chris Gibson. “Where Is Creativity in the City? Integrating Qualitative and GIS Methods.” Environment and Planning A 41 (2009): 2295–2614.Collis, Christy, Emma Felton, and Phil Graham. “Beyond the Inner City: Real and Imagined Places in Creative Place Policy and Practice.” The Information Society 26 (2010): 104-112. Dowling, Robyn, and Kathy Mee. “Tales of the City: Western Sydney at the End of the Millennium.” Sydney: The Emergence of a World City. Ed. John Connell. Melbourne: Oxford UP, 2000. Drake, Graham. “‘This Place Gives Me Space’: Place and Creativity in the Creative Industries.” Geoforum 34 (2003): 511–524. Felton, Emma, Christy Collis and Phil Graham. “Making Connections: Creative Industries Networks in Outer-Suburban Locations.” Australian Geographer 41 (2010): 57-70. Gibson, Chris, and Chris Brennan-Horley. “Goodbye Pram City: Beyond Inner/Outer Zone Binaries in Creative City Research.” Urban Policy and Research 24 (2006): 455–71. ———, Peter Murphy, and Robert Freestone. “Employment and Socio-Spatial Relations in Australia's Cultural Economy.” Australian Geographer 33 (2002): 173-189. Landry, Charles. The Creative City: A Toolkit for Urban Innovators. London: Comedia/Earthscan, 2000. Lea, Tess, Susan Luckman, Chris Gibson, Donal Fitzpatrick, Chris Brennan-Horley, Julie Willoughby-Smith, and Karen Hughes. Creative Tropical City: Mapping Darwin’s Creative Industries. Darwin: Charles Darwin University, 2009. Luckman, Sue, Chris Gibson, and Tess Lea. “Mosquitoes in the Mix: How Transferable Is Creative City Thinking?” Singapore Journal of Tropical Geography (2009): 30, 47-63. Markusen, Ann, Gregory Wassall, Douglas DeNatale, and Randy Cohen. “Defining the Creative Economy: Industry and Occupational Approaches.” Economic Development Quarterly 22 (2008): 24-45. Matei, Sorin, Sandra Ball-Rokeach, and Jack Qiu. “Fear and Misperception of Los Angeles Urban Space: A Spatial-Statistical Study of Communication-Shaped Mental Maps.” Communication Research 28 (2001): 429-463. McCannell, Dean. “Staged Authenticity: Arrangements of Social Space in Tourist Settings.” The American Journal of Sociology 79 (1973): 589-603. Mee, Kathy. “Dressing Up the Suburbs: Representations of Western Sydney.” Metropolis Now: Planning and the Urban in Contemporary Australia Eds. Katherine Gibson and Sophie Watson. Sydney: Pluto Press, 1994. 60–77. Powell, Diane. Out West: Perceptions of Sydney’s Western Suburbs. Sydney: Allen and Unwin, 1993. Shorthose, Jim. “Accounting for Independent Creativity in the New Cultural Economy.” Media International Australia 112 (2004): 150-161. Scott, Allen J. The Cultural Economy of Cities. London: Sage, 2000. Tuan, Yi-Fu. “Images and Mental Maps.” Annals of the Association of American Geographers 65 (1975): 205-213. Watson, Allan. “Global Music City: Knowledge and Geographical Proximity in London’s Recorded Music Industry.” Area 40 (2008): 12–23.
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