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负责白三烯B4受体拮抗剂CP-195,543体外代谢的人细胞色素P450的鉴定。

Identification of the human cytochrome P450s responsible for the in vitro metabolism of a leukotriene B4 receptor antagonist, CP-195,543.

作者信息

Khojasteh-Bakht S C, Rossulek M I, Fouda H G, Prakash C

机构信息

Department of Pharmacokinetics, Dynamics and Mechanism, Pfizer Global Research and Development, Groton, CT 06340, USA.

出版信息

Xenobiotica. 2003 Dec;33(12):1201-10. doi: 10.1080/00498250310001646362.

Abstract
  1. The major human cytochrome P450 (CYP) form(s) responsible for the metabolism of CP-195,543, a potent leukotriene B4 antagonist, were investigated. 2. Incubation of CP-195,543 with human liver microsomes resulted in the formation of three major metabolites, M1-3. M1 and M2 were diastereoisomers and formed by oxidation on the benzylic position. M3 was formed by aromatic oxidation of the benzyl group attached to the 3-position of the benzopyran ring. 3. The results from experiments with recombinant CYPs, correlation studies and inhibition studies with form-selective inhibitors and a CYP3A antibody strongly suggest that the CYP3A4 plays a major role in the metabolism of CP-195,543. Recombinant CYP3A5 did not metabolize CP-195,543. 4. The apparent K(m) and V(max) for the formation of M1-3 in human liver microsomes were determined as 36 microM and 4.1 pmol min(-1) pmol(-1) P450, 44 microM and 10 pmol min(-1) pmol(-1) P450, and 34 microM and 2.0 pmol min(-1) pmol(-1) P450, respectively. The average in vitro intrinsic clearance for M2 was the highest both in human liver microsomes and recombinant CYP3A4 compared with M1 and M3. Intrinsic clearance for M2 in human liver microsomes and recombinant CYP3A4 was 0.231 and 0.736 ml min(-1) pmol(-1) P450, respectively. The intrinsic clearances for M1 and M3 in human liver microsomes and CYP3A4 were 0.114 and 0.060 and 0.197 and 0.088 ml min(-1) pmol(-1) P450, respectively. This suggests that benzylic oxidation is the predominant phase I metabolic pathway of CP-195,543 in man.
摘要
  1. 研究了负责强效白三烯B4拮抗剂CP - 195,543代谢的主要人体细胞色素P450(CYP)形式。2. CP - 195,543与人肝微粒体孵育产生了三种主要代谢物M1 - 3。M1和M2是非对映异构体,通过苄基位置的氧化形成。M3是由苯并吡喃环3位连接的苄基的芳环氧化形成的。3. 重组CYP实验、相关性研究以及使用形式选择性抑制剂和CYP3A抗体的抑制研究结果强烈表明,CYP3A4在CP - 195,543的代谢中起主要作用。重组CYP3A5不代谢CP - 195,543。4. 人肝微粒体中M1 - 3形成的表观K(m)和V(max)分别测定为36 microM和4.1 pmol min(-1) pmol(-1) P450、44 microM和10 pmol min(-1) pmol(-1) P450以及34 microM和2.0 pmol min(-1) pmol(-1) P450。与M1和M3相比,M2在人肝微粒体和重组CYP3A4中的平均体外内在清除率最高。人肝微粒体和重组CYP3A4中M2的内在清除率分别为0.231和0.736 ml min(-1) pmol(-1) P450。人肝微粒体和CYP3A4中M1和M3的内在清除率分别为0.114和0.060以及0.197和0.088 ml min(-1) pmol(-1) P450。这表明苄基氧化是CP - 195,543在人体中的主要I相代谢途径。

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