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评估代谢相关细胞色素 P450 抑制引起的药物-药物相互作用。

Assessment of drug-drug interactions caused by metabolism-dependent cytochrome P450 inhibition.

机构信息

College of Pharmacy, Chungnam National University, Daejeon 305-764, Republic of Korea.

出版信息

Chem Biol Interact. 2012 Jun 25;198(1-3):49-56. doi: 10.1016/j.cbi.2012.05.007. Epub 2012 May 28.

Abstract

This study was designed to develop methods for detecting metabolism-dependent reversible, quasi-irreversible, and irreversible cytochrome P450 (CYP) inhibition using pooled human liver microsomes and a liquid chromatography/tandem mass spectrometry (LC-MS/MS) system. Metabolism-dependent inhibition (MDI) was identified based on IC(50) shifts after pre-incubation of the tested compounds with NADPH. To distinguish reversible MDI from mechanism-based inhibition (MBI), R-fluoxetine and ticlopidine were used as positive inhibitors for reversible MDI and MBI of CYP2C19, respectively. R-fluoxetine and ticlopidine inhibited CYP2C19 activity, as determined using S-mephenytoin as a substrate, and caused 8.7- and 2.3-fold IC(50) shifts, respectively, after pre-incubation. Inhibition of CYP2C19 by R-fluoxetine, but not ticlopidine, was markedly reversed by ultracentrifugation, and two or three ultracentrifugations were not more effective than one, indicating that ultracentrifugation only once may be sufficient to reverse the reversible MDI. To distinguish between quasi-irreversible and irreversible inhibition, diltiazem and mifepristone were used as quasi-irreversible and irreversible inhibitors of CYP3A4, respectively, and CYP3A4 activity was measured using midazolam and testosterone as substrates. After pre-incubation, CYP3A4 IC(50) shifts caused by diltiazem and mifepristone were greater than 2.5- and 3.7-fold, respectively. Incubation with 2mM potassium ferricyanide for 10min reversed the MDI of CYP3A4 by diltiazem, but not mifepristone. Increases in potassium ferricyanide concentration and incubation time reduced the recovery of CYP3A4 activity. The established methods were confirmed using three CYP3A4 inhibitors including diltiazem, mifepristone and amiodarone (a reversible metabolism-dependent inhibitor). We consider these methods to be useful tools for discriminating between reversible MDI and MBI.

摘要

本研究旨在开发使用人肝微粒体和液相色谱/串联质谱(LC-MS/MS)系统检测代谢依赖性可逆、准不可逆和不可逆细胞色素 P450(CYP)抑制的方法。代谢依赖性抑制(MDI)是基于测试化合物与 NADPH 预孵育后 IC(50)的变化来鉴定的。为了将可逆 MDI 与基于机制的抑制(MBI)区分开来,R-氟西汀和噻氯匹定分别用作 CYP2C19 可逆 MDI 和 MBI 的阳性抑制剂。R-氟西汀和噻氯匹定抑制 CYP2C19 活性,如以 S-美芬妥因作为底物测定的那样,并分别导致预孵育后 8.7 倍和 2.3 倍的 IC(50)变化。R-氟西汀对 CYP2C19 的抑制,但不是噻氯匹定,经超速离心明显逆转,两次或三次超速离心并不比一次更有效,表明一次超速离心可能足以逆转可逆 MDI。为了区分准不可逆和不可逆抑制,地尔硫卓和米非司酮分别用作 CYP3A4 的准不可逆和不可逆抑制剂,并分别以咪达唑仑和睾酮作为底物测定 CYP3A4 活性。预孵育后,地尔硫卓和米非司酮引起的 CYP3A4 IC(50)变化大于 2.5 倍和 3.7 倍。用 2mM 高铁氰化钾孵育 10min 可逆转地尔硫卓对 CYP3A4 的 MDI,但不能逆转米非司酮。增加高铁氰化钾浓度和孵育时间会降低 CYP3A4 活性的恢复。使用三种 CYP3A4 抑制剂(地尔硫卓、米非司酮和胺碘酮)验证了所建立的方法。我们认为这些方法是区分可逆 MDI 和 MBI 的有用工具。

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