Academic literature on the topic 'ORGANO ARSENICALS'

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Journal articles on the topic "ORGANO ARSENICALS"

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Hanaoka, Ken’ichi, Walter Goessler, Toshikazu Kaise, et al. "Occurrence of a few organo-arsenicals in jellyfish." Applied Organometallic Chemistry 13, no. 2 (1999): 95–99. http://dx.doi.org/10.1002/(sici)1099-0739(199902)13:2<95::aid-aoc804>3.0.co;2-t.

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Hanaoka, Ken'ichi, Hirokazu Ohno, Namiko Wada, et al. "Occurrence of organo-arsenicals in jellyfishes and their mucus." Chemosphere 44, no. 4 (2001): 743–49. http://dx.doi.org/10.1016/s0045-6535(00)00291-5.

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Shi, Xue-Min, Wen-Yan She, Ting-Ting Liu, Lian-Xun Gao, Yu-Jiao Liu, and Yi Liu. "1,3-Benzodioxole Derivatives Improve the Anti-Tumor Efficiency of Arsenicals." International Journal of Molecular Sciences 23, no. 13 (2022): 6930. http://dx.doi.org/10.3390/ijms23136930.

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Arsenicals have been widely used in the treatment of cancers such as leukemia and other tumors. However, their side effects limit their clinical application. Stiripentol, a second-line adjunctive treatment for epilepsy with a good safety profile, inhibits microsomal cytochrome-P450-family enzymes to extend the retention time of co-administration. Inspired by the metabolism of stiripentol, the 1,3-benzodioxole responsible for the inhibition and its metabolic derivatives were conjugated with arsenical precursors. The fabricated arsenicals were eliminated much slower in mice and maintained an eff
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Majumdar, Kunal Kanti. "Chronic arsenic poisoning and Hepatotoxicity." Journal of Comprehensive Health 5, no. 1 (2020): 24–33. http://dx.doi.org/10.53553/jch.v05i01.003.

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Arsenic (As) is a toxic and carcinogenic metalloid. Arsenic toxicity is a global health problem affecting many millions of people. Contamination is caused by arsenic from natural geological sources leaching into aquifers, contaminating drinking water and may also occur from mining and other industrial processes. Chronic arsenic poisoning, or arsenicosis, is typically defined by the classical skin manifestations, together with involvement of internal organs, such as liver injury, in the presence of known arsenic exposure. Probably, the most important concern with arsenic exposure is its carcino
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Adeyi, Olubisi E., Oluwatobi T. Somade, Emmanuel I. Ugwor, Olayinka A. Oladimeji, Happiness O. Ozoemena, and Akindele O. Adeyi. "Assessments of the Safety of Arsenicals on Dyslipidaemia and Reproductive Organ Morphology of Albino Rats." Nigerian Journal of Biochemistry and Molecular Biology 39, no. 2 (2024): 49–56. http://dx.doi.org/10.4314/njbmb.v39i2.3.

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Epidemiological studies have implicated Arsenic (As) an environmental toxicant in the etiology of many diseases which have been associated with dyslipidaemia and cardiovascular abnormalities. This study investigated the comparative effect of sub-chronic exposure to two arsenicals on the lipid profiles and morphology of the reproductive organs. Fifty albino rats were divided into five groups of 10 animals each (5 male and 5 female) were exposed to different doses of arsenic (As) either as sodium arsenite or sodium arsenate for 5 weeks. Lipids [triacylglycerol (TAG), cholesterol (CHOL) and phosp
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Liu, Dan, Xiaoxu Duan, Dandan Dong, et al. "Activation of the Nrf2 Pathway by Inorganic Arsenic in Human Hepatocytes and the Role of Transcriptional Repressor Bach1." Oxidative Medicine and Cellular Longevity 2013 (2013): 1–10. http://dx.doi.org/10.1155/2013/984546.

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Previous studies have proved that the environmental toxicant, inorganic arsenic, activates nuclear factor erythroid 2-related factor 2 (Nrf2) pathway in many different cell types. This study tried to explore the hepatic Nrf2 pathway upon arsenic treatment comprehensively, since liver is one of the major target organs of arsenical toxicity. Our results showed that inorganic arsenic significantly induced Nrf2 protein and mRNA expression in Chang human hepatocytes. We also observed a dose-dependent increase of antioxidant response element- (ARE-) luciferase activity. Both the mRNA and protein lev
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Poon, Louis, Shaguftah Younus, and Lee D. Wilson. "Adsorption study of an organo-arsenical with chitosan-based sorbents." Journal of Colloid and Interface Science 420 (April 2014): 136–44. http://dx.doi.org/10.1016/j.jcis.2014.01.003.

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Sarkar, Dibyendu, Rupali Datta, and Saurabh Sharma. "Fate and bioavailability of arsenic in organo-arsenical pesticide-applied soils." Chemosphere 60, no. 2 (2005): 188–95. http://dx.doi.org/10.1016/j.chemosphere.2004.11.060.

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Tanaka, Joji, Seiji Tani, Raoul Peltier, et al. "Synthesis, aggregation and responsivity of block copolymers containing organic arsenicals." Polymer Chemistry 9, no. 13 (2018): 1551–56. http://dx.doi.org/10.1039/c7py01852e.

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Tanaka, Joji, Alexander Evans, Pratik Gurnani, Andrew Kerr, and Paul Wilson. "Functionalisation and stabilisation of polymeric arsenical nanoparticles prepared by sequential reductive and radical cross-linking." Polymer Chemistry 11, no. 14 (2020): 2519–31. http://dx.doi.org/10.1039/d0py00229a.

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Dissertations / Theses on the topic "ORGANO ARSENICALS"

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Garnier, Nicolas. "Mechanisms of action of the novel anti-cancer organic arsenical darinaparsin (ZIO-101, S-dimethylarsino- glutathione, Dar) in cancer cells." Thesis, McGill University, 2013. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=119553.

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Arsenic trioxide (ATO) is a successful treatment option for Acute Promyelocytic Leukemia (APL), but other cancers remain mildly sensitive to ATO at clinically achievable doses. Moreover, APL cells can develop resistance to ATO. It has been shown that resistance to ATO and/or moderate sensitivity correlates with either modulation of arsenic transport or increased expression of cytoprotective enzymes. Darinaparsin (S-dimethylarsino-GSH; Dar) is a significantly more potent apoptosis-inducing arsenical than ATO in various malignant cell lines and in APL patient blasts. It also has a maximum tolera
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Chiu, Chuen Huey, and 邱春惠. "A Study on the Transformation of Arsenicals in the Soil after Organic Fertilizer Application." Thesis, 1993. http://ndltd.ncl.edu.tw/handle/51768538281730334463.

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碩士<br>國立中興大學<br>土壤學系<br>81<br>@ 砷是一種微量極毒性物質,其中最引人注意的如台灣烏腳病。砷的毒 性因其不同化學結構而不同,毒性的高低順序為:As(Ⅲ) > As(Ⅴ) > 有 機砷。砷在土壤中存在的型態,可區分為,無機態之砷酸化合物、亞砷酸 化合物,有機態之單甲基砷、雙甲基砷(DMA)。本研究主要目的在探討施 用有機肥料對土壤Eh值及砷型態的影響。分別在中洲土與鹽水土中,施用 雞糞堆肥或風乾雞糞,並以未施用有機肥料做對照,控制水份含量於淹 水 1公分或10%水份含量。 在第0、3、10、20、31、38、48、56天測定土 壤的Eh值、pH值並做砷物種分離。以Dowex 1-x8,Dowex 50w-x8兩種樹脂 及0.1% CHCOOH,5% CHCOOH,1M HCl三種淋洗液,分離土壤中常見的四種 砷劑,並以 0.01M 磷酸作為砷的土壤抽出劑。結果顯示,在淹水狀態下 ,施用雞糞堆肥有稍微提高pH的作用; 在最初20天有助於提高土壤的Eh
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Books on the topic "ORGANO ARSENICALS"

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Saul, Patai, ed. The chemistry of organic arsenic, antimony, and bismuth compounds. Wiley, 1994.

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Book chapters on the topic "ORGANO ARSENICALS"

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Liu, Yu-Jiao, and Yi Liu. "Mitochondrial Toxicity of Organic Arsenicals." In Methods in Molecular Biology. Springer US, 2022. http://dx.doi.org/10.1007/978-1-0716-2309-1_11.

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Goessler, W., D. Kuehnelt, and K. J. Irgolic. "HPLC-ICP-MS Methods for the Determination of Inorganic and Organic Arsenic Compound." In Arsenic and Old Mustard: Chemical Problems in the Destruction of Old Arsenical and ‘Mustard’ Munitions. Springer Netherlands, 1998. http://dx.doi.org/10.1007/978-94-015-9115-7_11.

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Bencko, Vladimir, and Florence Yan Li Foong. "The History of Organic Arsenical Pesticides and Health Risks Related to the Use of Agent Blue." In Environmental Security Assessment and Management of Obsolete Pesticides in Southeast Europe. Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-6461-3_11.

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Unger, Thomas A. "Organo arsenics." In Pesticide Synthesis Handbook. Elsevier, 1996. http://dx.doi.org/10.1016/b978-081551401-5.50312-9.

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Goldman, Rose H. "Health Effects of Arsenic." In Modern Occupational Diseases Diagnosis, Epidemiology, Management and Prevention. BENTHAM SCIENCE PUBLISHERS, 2022. http://dx.doi.org/10.2174/9789815049138122010016.

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Arsenic is a naturally occurring element with exposures in various work settings. Arsenic exposure can occur environmentally, particularly through drinking contaminated water and ingestion of some foods. The most toxic forms are inorganic arsenic, iAs (trivalent, pentavalent), and its metabolites, as well as the highly toxic arsine gas, the latter causing hemolysis. There are also organic arsenicals in food, particularly seafood, of little or no known toxicity. Inorganic arsenic is well absorbed through ingestion and respiration and is quickly cleared from the blood, distributed throughout the
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