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布罗匹明的人体生物转化。体外形成的主要布罗匹明氧化代谢物的特征。

Human biotransformation of bropirimine. Characterization of the major bropirimine oxidative metabolites formed in vitro.

作者信息

Wynalda M A, Hauer M J, Wienkers L C

机构信息

Drug Metabolism and Disposition Research Pharmacia & Upjohn, Kalamazoo, MI 49007, USA.

出版信息

Drug Metab Dispos. 1998 Oct;26(10):1048-51.

PMID:9763414
Abstract

Bropirimine (2-amino-5-bromo-6-phenyl-4-pyrimidinone) is a member of a class of antineoplastic agents known as aryl pyrimidinones. In human liver microsomal incubations, bropirimine oxidative metabolism is characterized by the formation of three metabolites. Mass spectrometric analysis of the incubation mixture revealed three bropirimine oxidative metabolites, identified as the bropirimine dihydrodiol, p-hydroxybropirimine, and m-hydroxybropirimine. In vitro studies using human liver microsomes and recombinant cytochrome P450 isoforms were performed to identify the P450 enzyme(s) responsible for bropirimine oxidation. Coincubation with the selective CYP1A2 inhibitor alpha-naphthoflavone abolished bropirimine metabolism in human liver microsomes. Furthermore, when screened against a panel of cDNA expressed cytochrome P450 enzymes (CYP1A2, CYP2C9, CYP2C19, CYP2D6, CYP2E1, and CYP3A4), bropirimine was metabolized to both p- and m-hydroxybropirimine exclusively in incubations with cDNA-expressed CYP1A2 microsomes. Mechanistic studies using cDNA-expressed CYP1A2 microsomes fortified with microsomal epoxide hydrolase revealed that all three bropirimine oxidative metabolites appear to be the result of a common arene oxide, which serves as a substrate for microsomal epoxide hydrolase to generate the dihydrodiol or rearranges to yield p- and m-hydroxybropirimine.

摘要

布罗匹立明(2-氨基-5-溴-6-苯基-4-嘧啶酮)是一类被称为芳基嘧啶酮的抗肿瘤药物中的一员。在人肝微粒体孵育实验中,布罗匹立明的氧化代谢以形成三种代谢产物为特征。对孵育混合物的质谱分析揭示了三种布罗匹立明氧化代谢产物,分别鉴定为布罗匹立明二氢二醇、对羟基布罗匹立明和间羟基布罗匹立明。利用人肝微粒体和重组细胞色素P450同工酶进行了体外研究,以鉴定负责布罗匹立明氧化的P450酶。与选择性CYP1A2抑制剂α-萘黄酮共同孵育可消除人肝微粒体中布罗匹立明的代谢。此外,当针对一组cDNA表达的细胞色素P450酶(CYP1A2、CYP2C9、CYP2C19、CYP2D6、CYP2E1和CYP3A4)进行筛选时,布罗匹立明仅在与cDNA表达的CYP1A2微粒体的孵育中代谢为对羟基和间羟基布罗匹立明。使用添加了微粒体环氧化物水解酶的cDNA表达的CYP1A2微粒体进行的机制研究表明,所有三种布罗匹立明氧化代谢产物似乎都是一种常见芳烃氧化物的结果,该芳烃氧化物作为微粒体环氧化物水解酶的底物生成二氢二醇,或重排生成对羟基和间羟基布罗匹立明。

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