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使用鸡尾酒孵育法和液相色谱-串联质谱法,在人肝微粒体中用12种探针底物筛选十种细胞色素P450酶活性。

Screening of ten cytochrome P450 enzyme activities with 12 probe substrates in human liver microsomes using cocktail incubation and liquid chromatography-tandem mass spectrometry.

作者信息

Kim Hyun-Ji, Lee Hyunyoung, Ji Hyeon-Kyeong, Lee Taeho, Liu Kwang-Hyeon

机构信息

College of Pharmacy and Research Institute of Pharmaceutical Sciences, Kyungpook National University, Daegu, 41566, South Korea.

BK21 Plus KNU Multi-Omics based Creative Drug Research Team, College of Pharmacy, Kyungpook National University, Daegu, 41566, South Korea.

出版信息

Biopharm Drug Dispos. 2019 Apr;40(3-4):101-111. doi: 10.1002/bdd.2174. Epub 2019 Mar 18.

Abstract

Testing for potential drug interactions of new chemical entities is essential when developing a novel drug. In this study, an assay was designed to evaluate drug interactions with 10 major human cytochrome P450 (P450) enzymes incubated in liver microsomes, involving 12 probe substrates with two cocktail incubation sets used in a single liquid chromatography-tandem mass spectrometry (LC-MS/MS) run. The P450 substrate composition in each cocktail set was optimized to minimize solvent effects and mutual drug interactions among substrates as follows: cocktail A was composed of phenacetin for CYP1A2, bupropion for CYP2B6, amodiaquine for CYP2C8, diclofenac for CYP2C9, S-mephenytoin for CYP2C19, and dextromethorphan for CYP2D6; cocktail B was composed of coumarin for CYP2A6, chlorzoxazone for CYP2E1, astemizole for CYP2J2, and midazolam, nifedipine, and testosterone for CYP3A. Multiple probe substrates were used for CYP3A owing to the multiple substrate-binding sites and substrate-dependent inhibition. After incubation in human liver microsomes, each incubation mixture was pooled and all probe metabolites were simultaneously analysed in a single LC-MS/MS run. Polarity switching was used to acquire the negative-ion mode for hydroxychlorzoxazone and positive-ion mode for the remaining analytes. The method was validated by comparing the inhibition data obtained from incubation of each individual probe substrate alone and with the substrate cocktails. The half-maximal inhibitory concentration values obtained from the cocktail and individual incubations were well correlated and in agreement with previously reported values. This new method will be useful in assessing the drug interaction potential of new chemical entities during new drug development.

摘要

在开发新型药物时,检测新化学实体的潜在药物相互作用至关重要。在本研究中,设计了一种测定方法,以评估在肝微粒体中与10种主要人类细胞色素P450(P450)酶孵育时的药物相互作用,涉及12种探针底物,在一次液相色谱 - 串联质谱(LC-MS/MS)运行中使用两组鸡尾酒孵育。每个鸡尾酒组中的P450底物组成经过优化,以尽量减少溶剂效应和底物之间的相互药物相互作用,具体如下:鸡尾酒A由用于CYP1A2的非那西丁、用于CYP2B6的安非他酮、用于CYP2C8的阿莫地喹、用于CYP2C9的双氯芬酸、用于CYP2C19的S-美芬妥因和用于CYP2D6的右美沙芬组成;鸡尾酒B由用于CYP2A6的香豆素、用于CYP2E1的氯唑沙宗、用于CYP2J2的阿司咪唑以及用于CYP3A的咪达唑仑、硝苯地平和睾酮组成。由于多个底物结合位点和底物依赖性抑制,CYP3A使用了多种探针底物。在人肝微粒体中孵育后,将每个孵育混合物合并,并在一次LC-MS/MS运行中同时分析所有探针代谢物。采用极性切换来获取氯唑沙宗羟基化产物的负离子模式和其余分析物的正离子模式。通过比较单独孵育每种单个探针底物以及与底物鸡尾酒孵育获得的抑制数据来验证该方法。从鸡尾酒孵育和单个孵育获得的半数最大抑制浓度值具有良好的相关性,并且与先前报道的值一致。这种新方法将有助于在新药开发过程中评估新化学实体的药物相互作用潜力。

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