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困惑的药物化学家的药物代谢

Drug metabolism for the perplexed medicinal chemist.

机构信息

Department of Pharmacy, University Hospital Centre (CHUV), Rue du Bugnon, CH-1011 Lausanne.

出版信息

Chem Biodivers. 2009 Nov;6(11):2055-70. doi: 10.1002/cbdv.200900052.

Abstract

Two related and significant issues may elicit perplexity in medicinal chemists and are discussed here. First, a broad presentation of the pharmacological and toxicological consequences of drug metabolism should justify the significance of drug metabolism and serve as an incentive to further study. When comparing the pharmacological activities of a drug and its metabolite(s), a continuum is found which ranges from soft drugs (no active metabolites) to prodrugs (inactive per se, as illustrated here with clopidogrel and prasugrel). Innumerable intermediate cases document drugs whose activity is shared by one or more metabolites, as exemplified with tamoxifen. The toxicological consequences of metabolism at the molecular, macromolecular, and macroscopic levels are manyfold. A brief overview is offered together with a summary of the reactions of toxification and detoxification of the antiepileptic valproic acid. The second issue discussed in the review is a comparison of the relative significance of cytochromes P450 and other oxidoreductases (EC 1), hydrolases (EC 3), and transferases (EC 2) in drug metabolism, based on a 'guesstimate' of the number of drug metabolites that are known to be produced by them. The conclusion is that oxidoreductases are the main enzymes responsible for the formation of toxic or active metabolites, whereas transferases play the major role in producing inactive and nontoxic metabolites.

摘要

两个相关且重要的问题可能会让药物化学家感到困惑,这里将对其进行讨论。首先,广泛介绍药物代谢的药理学和毒理学后果,以证明药物代谢的重要性,并激励进一步研究。在比较药物及其代谢物的药理学活性时,会发现一个连续体,范围从软性药物(无活性代谢物)到前药(本身无活性,如氯吡格雷和普拉格雷)。无数中间情况表明,许多药物的活性由一种或多种代谢物共享,例如他莫昔芬。代谢在分子、大分子和宏观水平上的毒理学后果是多方面的。本文简要概述了这些后果,并总结了抗癫痫药丙戊酸的致毒和解毒反应。综述中讨论的第二个问题是比较细胞色素 P450 和其他氧化还原酶(EC 1)、水解酶(EC 3)和转移酶(EC 2)在药物代谢中的相对重要性,这是基于已知由它们产生的药物代谢物数量的“猜测”。结论是,氧化还原酶是形成毒性或活性代谢物的主要酶,而转移酶在产生无活性和无毒代谢物方面发挥主要作用。

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