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人类药物代谢与细胞色素P450:体外模型的应用及相关性

Human drug metabolism and the cytochromes P450: application and relevance of in vitro models.

作者信息

Venkatakrishnan K, Von Moltke L L, Greenblatt D J

机构信息

Department of Pharmacology and Experimental Therapeutics, Tufts University School of Medicine, New England Medical Center Hospital, Boston, MA 02111, USA.

出版信息

J Clin Pharmacol. 2001 Nov;41(11):1149-79. doi: 10.1177/00912700122012724.

Abstract

The cytochromes P450 (CYPs) constitute a superfamily of hemoprotein enzymes that are responsible for the biotransformation of numerous xenobiotics, including therapeutic agents. Studies of the biochemical and enzymatic properties of these enzymes and their molecular genetics and regulation of gene expression and activity have greatly enhanced our understanding of several aspects of clinical pharmacology such as pharmacokinetic variability, drug toxicity, and drug interactions. This review evaluates the major human hepatic drug-metabolizing CYP enzymes and their clinically relevant substrates, inhibitors, and inducers. Also discussed are the molecular bases and clinical implications of genetic polymorphisms that affect the CYPs. Much of the information on the specificity of substrates and inhibitors of the CYP enzymes is derived from in vitro studies using human liver microsomes and heterologously expressed CYP enzymes. These methods are discussed, and guidelines are provided for designing enzyme kinetic and reaction phenotyping studies using multiple approaches. The strengths, weaknesses, and discrepancies among the different approaches are considered using representative examples. The mathematical models used in predicting the pharmacokinetic clearance of a drug from in vitro estimates of intrinsic clearance and the principles of quantitative in vitro-in vivo scaling of metabolic drug interactions are also discussed.

摘要

细胞色素P450(CYPs)构成了一个血红蛋白酶超家族,负责多种外源性物质(包括治疗药物)的生物转化。对这些酶的生化和酶学特性及其分子遗传学以及基因表达和活性调控的研究,极大地增进了我们对临床药理学多个方面的理解,如药代动力学变异性、药物毒性和药物相互作用。本综述评估了主要的人类肝脏药物代谢CYP酶及其临床相关的底物、抑制剂和诱导剂。还讨论了影响CYPs的基因多态性的分子基础和临床意义。关于CYP酶底物和抑制剂特异性的许多信息来自使用人肝微粒体和异源表达CYP酶的体外研究。本文讨论了这些方法,并提供了使用多种方法设计酶动力学和反应表型研究的指南。使用代表性实例考虑了不同方法之间的优缺点和差异。还讨论了用于从体外内在清除率估计预测药物药代动力学清除率的数学模型以及代谢药物相互作用的定量体外-体内标度原理。

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