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使用CYP3A4选择性灭活剂(CYP3cide)在体外评估CYP3A清除的药物时,细胞色素CYP3A4与CYP3A5的相对贡献。

Relative contributions of cytochrome CYP3A4 versus CYP3A5 for CYP3A-cleared drugs assessed in vitro using a CYP3A4-selective inactivator (CYP3cide).

作者信息

Tseng Elaine, Walsky Robert L, Luzietti Ricardo A, Harris Jennifer J, Kosa Rachel E, Goosen Theunis C, Zientek Michael A, Obach R Scott

机构信息

Pfizer Inc., Groton, Connecticut (E.T., R.E.K., T.C.G,. R.S.O.) and La Jolla, California (M.A.Z.), and AstraZeneca, Waltham, Massachusetts (R.L.W., R.A.L., J.J.H.).

Pfizer Inc., Groton, Connecticut (E.T., R.E.K., T.C.G,. R.S.O.) and La Jolla, California (M.A.Z.), and AstraZeneca, Waltham, Massachusetts (R.L.W., R.A.L., J.J.H.)

出版信息

Drug Metab Dispos. 2014 Jul;42(7):1163-73. doi: 10.1124/dmd.114.057000. Epub 2014 Apr 15.

Abstract

Metabolism by cytochrome P4503A (CYP3A) is the most prevalent clearance pathway for drugs. Designation of metabolism by CYP3A commonly refers to the potential contribution by one or both of two enzymes, CYP3A4 and CYP3A5. The metabolic turnover of 32 drugs known to be largely metabolized by CYP3A was examined in human liver microsomes (HLMs) from CYP3A5 expressers (*1/*1 genotype) and nonexpressers (*3/*3 genotype) in the presence and absence of ketoconazole and CYP3cide (a selective CYP3A4 inactivator) to calculate the contribution of CYP3A5 to metabolism. Drugs with the highest contribution of CYP3A5 included atazanavir, vincristine, midazolam, vardenafil, otenabant, verapamil, and tacrolimus, whereas 17 of the 32 tested showed negligible CYP3A5 contribution. For specific reactions in HLMs from *1/*1 donors, CYP3A5 contributes 55% and 44% to midazolam 1'- and 4-hydroxylation, 16% to testosterone 6β-hydroxylation, 56% and 19% to alprazolam 1'- and 4-hydroxylation, 10% to tamoxifen N-demethylation, and 58% to atazanavir p-hydroxylation. Comparison of the in vitro observations to clinical pharmacokinetic data showed only a weak relationship between estimated contribution by CYP3A5 and impact of CYP3A5 genotype on oral clearance, in large part because of the scatter in clinical data and the low numbers of study subjects used in CYP3A5 pharmacogenetics studies. These data should be useful in guiding which drugs should be evaluated for differences in pharmacokinetics and metabolism between subjects expressing CYP3A5 and those who do not express this enzyme.

摘要

细胞色素P4503A(CYP3A)介导的代谢是药物最主要的清除途径。CYP3A介导的代谢通常指两种酶CYP3A4和CYP3A5中一种或两种的潜在作用。在酮康唑和CYP3cide(一种选择性CYP3A4灭活剂)存在和不存在的情况下,对已知主要由CYP3A代谢的32种药物在来自CYP3A5表达者(*1/*1基因型)和非表达者(*3/3基因型)的人肝微粒体(HLM)中的代谢周转率进行了检测,以计算CYP3A5对代谢的贡献。CYP3A5贡献最高的药物包括阿扎那韦、长春新碱、咪达唑仑、伐地那非、奥替尼啶、维拉帕米和他克莫司,而在32种受试药物中,有17种显示CYP3A5的贡献可忽略不计。对于来自1/*1供体的HLM中的特定反应,CYP3A5对咪达唑仑1'-和4-羟基化的贡献分别为55%和44%,对睾酮6β-羟基化的贡献为16%,对阿普唑仑1'-和4-羟基化的贡献分别为56%和19%,对他莫昔芬N-去甲基化的贡献为10%,对阿扎那韦对羟基化的贡献为58%。将体外观察结果与临床药代动力学数据进行比较,结果显示CYP3A5的估计贡献与CYP3A5基因型对口服清除率的影响之间仅存在微弱的关系,这在很大程度上是由于临床数据的离散性以及CYP3A5药物遗传学研究中使用的研究对象数量较少。这些数据对于指导哪些药物应评估CYP3A5表达者与不表达该酶者之间的药代动力学和代谢差异应该是有用的。

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