Academic literature on the topic 'Outer Root Sheath Melanocytes'

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Journal articles on the topic "Outer Root Sheath Melanocytes"

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Peters, Eva M. J., Desmond J. Tobin, Natasha Botchkareva, Marcus Maurer, and Ralf Paus. "Migration of Melanoblasts into the Developing Murine Hair Follicle Is Accompanied by Transient c-Kit Expression." Journal of Histochemistry & Cytochemistry 50, no. 6 (2002): 751–66. http://dx.doi.org/10.1177/002215540205000602.

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Disruption of the c-Kit/stem cell factor (SCF) signaling pathway interferes with the survival, migration, and differentiation of melanocytes during generation of the hair follicle pigmentary unit. We examined c-Kit, SCF, and S100 (a marker for precursor melanocytic cells) expression, as well as melanoblast/melanocyte ultrastructure, in perinatal C57BL/6 mouse skin. Before the onset of hair bulb melanogenesis (i.e., stages 0–4 of hair follicle morphogenesis), strong c-Kit immunoreactivity (IR) was seen in selected non-mela-nogenic cells in the developing hair placode and hair plug. Many of thes
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Li, Hanluo, Jule Kristin Michler, Alexander Bartella, et al. "Culturing of Melanocytes from the Equine Hair Follicle Outer Root Sheath." Processes 9, no. 1 (2021): 177. http://dx.doi.org/10.3390/pr9010177.

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Hair follicles harbor a heterogeneous regenerative cell pool and represent a putative low-to-non-invasively available source of stem cells. We previously reported a technology for culturing human melanocytes from the hair follicle outer root sheath (ORS) for autologous pigmentation of tissue engineered skin equivalents. This study translated the ORS technology to horses. We de-veloped a culture of equine melanocytes from the ORS (eMORS) from equine forelock hair follicles cultured by means of an analogue human hair follicle-based in vitro methodology. The procedure was adjusted to equine physi
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Na, G. Y., S. H. Paek, B. C. Park, et al. "Isolation and characterization of outer root sheath melanocytes of human hair follicles." British Journal of Dermatology 155, no. 5 (2006): 902–9. http://dx.doi.org/10.1111/j.1365-2133.2006.07502.x.

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Takada, Koji, Keikichi Sugiyama, Ikuo Yamamoto, Kenkichi Óba, and Takuji Takeuchi. "Presence of Amelanotic Melanocytes Within the Outer Root Sheath in Senile White Hair." Journal of Investigative Dermatology 99, no. 5 (1992): 629–33. http://dx.doi.org/10.1111/1523-1747.ep12668031.

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Vanscheidt, Wolfgang, and Thomas Hunziker. "Repigmentation by Outer-Root-Sheath-Derived Melanocytes: Proof of Concept in Vitiligo and Leucoderma." Dermatology 218, no. 4 (2009): 342–43. http://dx.doi.org/10.1159/000197467.

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Randall, Valerie A., Tracey J. Jenner, Nigel A. Hibberts, Isabel O. De Oliveira, and Tayyebeh Vafaee. "Stem cell factor/c-Kit signalling in normal and androgenetic alopecia hair follicles." Journal of Endocrinology 197, no. 1 (2008): 11–23. http://dx.doi.org/10.1677/joe-07-0522.

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Androgens stimulate many hair follicles to alter hair colour and size via the hair growth cycle; in androgenetic alopecia tiny, pale hairs gradually replace large, pigmented ones. Since stem cell factor (SCF) is important in embryonic melanocyte migration and maintaining adult rodent pigmentation, we investigated SCF/c-Kit signalling in human hair follicles to determine whether this was altered in androgenetic alopecia. Quantitative immunohistochemistry detected three melanocyte-lineage markers and c-Kit in four focus areas: the epidermis, infundibulum, hair bulb (where pigment is formed) and
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Forrest, JW, MR Fleet, and GE Rogers. "Characterization of Melanocytes in Wool-bearing Skin of Merino Sheep." Australian Journal of Biological Sciences 38, no. 3 (1985): 245. http://dx.doi.org/10.1071/bi9850245.

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The distribution and character of melanocytes in the wool-bearing skin of Merino sheep of known genotypes were examined by light and electron microscopy. In black Merino sheep (ww, homozygous recessive), melanocytes were localized within three regions of the skin: epidermal-dermal border, outer root sheath and follicle bulb. Melanocytes within these regions were found to be actively producing melanin, had numerous dendritic extensions and were able to transfer melanin to adjacent keratinocytes. In a black Merino sheep whose fibres were white due to an experimentally induced copper deficiency t
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Limat, A., Denis Salomon, Pierre Carraux, Jean-Hilaire Saurat, and Thomas Hunziker. "Human melanocytes grown in epidermal equivalents transfer their melanin to follicular outer root sheath keratinocytes." Archives of Dermatological Research 291, no. 6 (1999): 325–32. http://dx.doi.org/10.1007/s004030050417.

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Horikawa, T., J. G. Morelli, D. A. Norris, and M. Ichihashi. "135 Inactive melanocytes in the outer root sheath of the hair follicle and the sebaceous gland." Journal of Dermatological Science 12, no. 2 (1996): 204. http://dx.doi.org/10.1016/0923-1811(96)89536-3.

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Forrest, JW, and MR Fleet. "Pigmented Spots in the WoolBearing Skin of White Merino Sheep Induced by Ultraviolet Light." Australian Journal of Biological Sciences 39, no. 2 (1986): 125. http://dx.doi.org/10.1071/bi9860125.

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Black-grey pigmented skin spots, some of which contained pigmented wool fibres, were observed in a flock of 8� 5-year-old white Merino ewes. The spots were concentrated along the backline and increased in number following shearing, suggesting exposure to sunlight to be of importance in the development of these non-congenital pigmented skin spots in genetically white Merino sheep. To test the effect of ultraviolet light, white Merino sheep, ranging in age from 3 to 8 years, had a closely clipped mid side area of wool-bearing skin irradiated on each of 28 consecutive days. Pigmented skin spots d
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Dissertations / Theses on the topic "Outer Root Sheath Melanocytes"

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Sülflow, Katharina. "Untersuchung von humanen Melanozyten aus der äußeren Haarwurzelscheide des Haarfollikels auf unterschiedlichen biokompatiblen Scaffolds als neuer Ansatz in der Vitiligotherapie." Doctoral thesis, Universitätsbibliothek Leipzig, 2016. http://nbn-resolving.de/urn:nbn:de:bsz:15-qucosa-213113.

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Um eine verbesserte Therapieoption mit weniger Schmerzen und Nebenwirkun-gen für Patienten mit Depigmentierungsstörungen wie Vitiligo zu entwickeln, wurde eine Methode zur nichtinvasiven Gewinnung von autologen Melanozyten aus der Haarwurzel genutzt. Die Haarwurzel als einfach zugängliches Stammzell-reservoir bietet die Möglichkeit, Vorläufermelanozyten aus der äußeren Haar-wurzelscheide zu isolieren, differenzieren und zu proliferieren. Für zukünftige autologe Transplantationsversuche wurden in dieser Arbeit die kultivierten hu-manen Melanozyten aus der äußeren Haarwurzelscheide (Human Melano
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Wilson, Caroline Lesley. "The hair follicle : studies of the outer root sheath in health and disease, and a possible role for the bulge." Thesis, Imperial College London, 1995. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.309741.

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Buscone, S., Andrei N. Mardaryev, B. Raafs, et al. "A new path in defining light parameters for hair growth: discovery and modulation of photoreceptors in human hair follicle." 2017. http://hdl.handle.net/10454/12062.

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Yes<br>Background and Objective: Though devices for hair growth based on low levels of light have shown encouraging results, further improvements of their efficacy is impeded by a lack of knowledge on the exact molecular targets that mediate physiological response in skin and hair follicle. The aim of this study was to investigate the expression of selected light-sensitive receptors in the human hair follicle and to study the impact of UV-free blue light on hair growth ex vivo. Material and Methods: The expression of Opsin receptors in human skin and hair follicles has been characterise
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Book chapters on the topic "Outer Root Sheath Melanocytes"

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Schneider, Marie, Christina Dieckmann, Katrin Rabe, Jan-Christoph Simon, and Vuk Savkovic. "Differentiating the Stem Cell Pool of Human Hair Follicle Outer Root Sheath into Functional Melanocytes." In Stem Cells and Tissue Repair. Springer New York, 2014. http://dx.doi.org/10.1007/978-1-4939-1435-7_16.

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Sahni, Kanika, and Somesh Gupta. "Non-Cultured Extracted Follicle Outer Root Sheath Cell Suspension Transplantation." In Vitiligo. John Wiley & Sons, Ltd, 2018. http://dx.doi.org/10.1002/9781118937303.ch32.

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Lenoir, M. C., B. A. Bernard, G. Pautrat, M. Darmon, and B. Shroot. "A new in vitro culture system to produce a fully differentiated epidermis from human hair follicle outer root sheath cells." In Trends in Human Hair Growth and Alopecia Research. Springer Netherlands, 1989. http://dx.doi.org/10.1007/978-94-011-7873-0_8.

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Gupta, Somesh, Sanjay Singh, and Savita Yadav. "Noncultured Extracted Hair Follicle Outer Root Sheath Cell Suspension." In ACS(I) Textbook of Cutaneous and Aesthetic Surgery (2 Volumes). Jaypee Brothers Medical Publishers (P) Ltd., 2018. http://dx.doi.org/10.5005/jp/books/14122_40.

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