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首页> 外文期刊>Drug Metabolism Reviews >Interindividual differences in nicotine metabolism and genetic polymorphisms of human CYP2A6.
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Interindividual differences in nicotine metabolism and genetic polymorphisms of human CYP2A6.

机译:人CYP2A6烟碱代谢和遗传多态性的个体差异。

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摘要

Nicotine is widely consumed throughout the world, and exerts a number of physiological effects. After nicotine is absorbed through the lungs by cigarette smoking, it undergoes extensive metabolism in humans. Nicotine is mainly metabolized to cotinine by cytochrome P450 (CYP) 2A6. CYP2A6 can metabolize some pharmaceutical agents such as halothane, valproic acid, and fadrozole, and activate tobacco-specific nitrosamines. There are large interindividual differences in nicotine metabolism, and it has been found that the interindividual differences are attributed to the genetic polymorphisms of CYP2A6 gene. This review describes the techniques for determination of in vivo nicotine metabolism, characteristics of each human CYP2A6 alleles, and ethnic differences. The relationship between CYP2A6 genetic polymorphism and potency of nicotine metabolism, smoking behavior, and cancer risk are extensively reviewed. Finally, the usefulness of nicotine metabolism for phenotyping of CYP2A6 in individuals and implication of the significance of CYP2A6 genetic polymorphism in a clinical perspective are discussed.
机译:尼古丁在世界各地被广泛消费,并发挥许多生理作用。尼古丁通过吸烟被肺部吸收后,会在人体中广泛代谢。尼古丁主要通过细胞色素P450(CYP)2A6代谢为可替宁。 CYP2A6可以代谢某些药物,例如氟烷,丙戊酸和法得唑,并激活烟草特有的亚硝胺。尼古丁代谢存在个体差异,发现个体差异是由于CYP2A6基因的遗传多态性引起的。这篇综述描述了确定体内烟碱代谢的技术,每个人CYP2A6等位基因的特征以及种族差异。 CYP2A6基因多态性与尼古丁代谢潜能,吸烟行为和癌症风险之间的关系得到了广泛的综述。最后,讨论了尼古丁代谢在个体CYP2A6表型研究中的有用性以及CYP2A6基因多态性在临床上的意义。

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