Bae Ok-Nam, Lim Kyung-Min, Noh Ji-Yoon, Kim Keun-Young, Lim Eun-Kyung, Chung Jin-Ho
College of Pharmacy, Institute of Pharmaceutical Sciences, Seoul National University, Seoul, 151-742 Korea.
Toxicol Res. 2008 Sep;24(3):161-167. doi: 10.5487/TR.2008.24.3.161. Epub 2008 Sep 1.
Recently, arsenic-toxicity has become the major focus of strenuous assessment and dynamic research from the academy and regulatory agency. To elucidate the cause and the mechanism underlying the serious adverse health effects from chronic ingestion of arsenic-contaminated drinking water, numerous studies have been directed on the investigation of arsenic-toxicity using various as well as systems. Neverthless, some questions for arsenic effects remain unexplained, reflecting the contribution of unknown factors to the manifestation of arsenic-toxicity. Interestingly, very recent studies on arsenic metabolites have discovered that trivalent methylated arsenicals show stronger cytotoxic and genotoxic potentials than inorganic arsenic or pentavalent metabolites, arguing that these metabolites could play a key role in arsenic-associated disorders. In this review, recent progress and literatures are summarized on the metabolism of trivalent methylated metabolites and their toxicity on body systems including cardiovascular system in an effort to provide an insight into the future research on arsenic-associated disorders.
最近,砷中毒已成为学术界和监管机构大力评估和动态研究的主要焦点。为了阐明长期摄入受砷污染的饮用水导致严重健康不良影响的原因和机制,众多研究致力于使用各种细胞和动物系统来调查砷中毒情况。然而,关于砷影响的一些问题仍未得到解释,这反映了未知因素对砷中毒表现的影响。有趣的是,最近关于砷代谢物的研究发现,三价甲基化砷化合物比无机砷或五价代谢物具有更强的细胞毒性和遗传毒性潜力,这表明这些代谢物可能在砷相关疾病中起关键作用。在本综述中,总结了三价甲基化代谢物的代谢及其对包括心血管系统在内的身体系统毒性的最新进展和文献,以期为砷相关疾病的未来研究提供见解。