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Assessment of multiple cytochrome P450 activities in metabolically inactivated human liver microsomes and roles of P450 2C isoforms in reaction phenotyping studies

机译:评估多种细胞色素P450活性在代谢灭活人肝微粒体中的作用及P450 2C同种型在反应表型研究中的作用

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摘要

Abstract The fraction of substrate metabolized (f m ) can be used to estimate drug interactions and can be determined by comparison of the intrinsic clearances (CL int ) of victim drugs obtained from inhibited and uninhibited hepatic enzymes . Commercially available human liver microsomes were recently developed in which one cytochrome P450 (P450) isoform is selectively inactivated. These inactivated liver microsomes were used to evaluate the roles of P450 2C isoforms in the depletion and oxidation of probe substrates. Determination of CL int with sets of control and P450 2C9‐inactivated liver microsomes yielded f m,P450 2C9 values of 0.69–1.0 for celecoxib, diclofenac and warfarin. Apparent minor contributions of P450 1A2/2C8/3A4 were seen in depletion assays, yielding ~1 for the sum of the f m values. Selectively inactivated liver microsomes were thereby shown to be potentially useful for determining the in vitro f m values for major P450 2C9 contributions to substrate oxidations. Metabolite formations from diclofenac and warfarin were suppressed by 62–84% by the replacement of control liver microsomes with P450 2C9‐inactivated liver microsomes. R ‐, S ‐ and racemic omeprazole and troglitazone oxidation activities by liver microsomes at multiple substrate concentrations were suppressed by 26–36% and 22–50%, respectively, when P450 2C19‐ and 2C8‐inactivated liver microsomes were used in place of control liver microsomes. This study provides important information to help elucidate the different roles of P450 isoforms in metabolite formation at different substrate concentrations. The data obtained allow the fractions metabolized to be calculated for victim drugs.
机译:摘要底物代谢(F M)的级分可用于估计药物相互作用,并且可以通过比较从抑制和不抑制的肝酶获得的受害者药物的内在间隙(Cl int)来确定。最近开发了可商购的人肝微粒体,其中一个细胞色素P450(P450)同种型选择性地灭活。这些灭活的肝微粒体用于评估P450 2C同种型在探针底物的耗尽和氧化中的作用。用对照组的Cl int测定,P450 2C9 - 灭活肝微粒体产生F m,P450 2C9值为0.69-1.0,对于Celecoxib,Diclofenac和Warfarin。在耗尽测定中看到P450 1A2 / 2C8 / 3A4的表观次要贡献,屈服于F m值的总和。因此,选择性地灭活的肝微粒体对于确定主要P450 2C9对基材氧化的贡献的体外F M值可能是有用的。通过用P450 2C9-灭活肝微粒体更换对照肝微粒体,通过替代对照肝微粒体抑制二氯芬酸和华法林的代谢物形成。当使用P450 2C19-和2C8 - 灭活肝微粒体代替对照时,通过在多个基质浓度下抑制多种底物浓度下的肝微粒体的R - ,S - 和外消旋氧化活性,分别抑制26-36%和22-50%,分别抑制26-36%和22-50%肝微粒体。本研究提供了重要信息,以帮助阐明P450同种型在不同底物浓度下代谢物形成的不同作用。获得的数据允许代谢的级分来计算受害者药物。

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    Laboratory of Drug Metabolism and PharmacokineticsShowa Pharmaceutical UniversityMachida Tokyo 194;

    Laboratory of Drug Metabolism and PharmacokineticsShowa Pharmaceutical UniversityMachida Tokyo 194;

    Laboratory of Drug Metabolism and PharmacokineticsShowa Pharmaceutical UniversityMachida Tokyo 194;

    Laboratory of Drug Metabolism and PharmacokineticsShowa Pharmaceutical UniversityMachida Tokyo 194;

    Laboratory of Drug Metabolism and PharmacokineticsShowa Pharmaceutical UniversityMachida Tokyo 194;

    Laboratory of Drug Metabolism and PharmacokineticsShowa Pharmaceutical UniversityMachida Tokyo 194;

    Pharmacokinetics and Bioanalysis CenterShin Nippon Biomedical Laboratories LtdKainan Wakayama Japan;

    Laboratory of Drug Metabolism and PharmacokineticsShowa Pharmaceutical UniversityMachida Tokyo 194;

    Pharmacokinetics and Bioanalysis CenterShin Nippon Biomedical Laboratories LtdKainan Wakayama Japan;

    Laboratory of Drug Metabolism and PharmacokineticsShowa Pharmaceutical UniversityMachida Tokyo 194;

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  • 正文语种 eng
  • 中图分类 药学;
  • 关键词

    celecoxib; diclofenac; omeprazole; troglitazone; warfarin;

    机译:Celecoxib;Diclofenac;奥美拉唑;Troglitazone;Warfarin;

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