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实验设计对评估3,4-亚甲基二氧甲基苯丙胺(摇头丸)基于机制的细胞色素P450 2D6失活的影响。

The impact of experimental design on assessing mechanism-based inactivation of CYP2D6 by MDMA (Ecstasy).

作者信息

Van Linh M, Heydari Amir, Yang Jiansong, Hargreaves Judith, Rowland-Yeo Karen, Lennard Martin S, Tucker Geoffrey T, Rostami-Hodjegan Amin

机构信息

Academic Unit of Clinical Pharmacology, University of Sheffield, Pharmacokinetics and Pharmacogenetics Group, Division of Clinical Sciences (South), Sheffield, UK.

出版信息

J Psychopharmacol. 2006 Nov;20(6):834-41. doi: 10.1177/0269881106062902. Epub 2006 Feb 14.

Abstract

MDMA (3-4-methylenedioxymethamphetamine, commonly known as Ecstasy) is a potent mechanism-based inhibitor (MBI) of cytochrome P450 2D6 (CYP2D6), causing quasi-irreversible inhibition of the enzyme in vitro. An evaluation of the in vivo implications of this phenomenon depends on the accuracy of the estimates of the parameters that define the inhibition in vitro, namely k(inact) (the maximal inhibition rate) and KI (the inactivation constant). These values are determined in two steps, pre-incubation of the enzyme with the inhibitor (enzyme inactivation), followed by dilution and further incubation to measure residual enzyme activity with a probe substrate. The aim of this study was to assess the impact of different dilutions and probe substrate concentrations on the estimates of k(inact) and KI using recombinantly expressed CYP2D6. Enzyme activity was measured by the conversion of dextromethorphan (DEX) to dextrorphan (DOR). Dilution factors of 1.25, 2, 5, 10, 25 and 50 (DEX at 30 microM) gave mean (+/-SE) values of k(inact) (min-1) of 0.20+/-0.06, 0.21+/-0.05, 0.31+/-0.06, 0.37+/-0.11, 0.51+/-0.10 and 0.58+/-0.08, respectively, and KI (microM) values (after correction for non-specific microsomal binding) of 2.22+/-1.90, 2.80+/-1.34, 5.78+/-2.07, 6.36+/-2.93, 3.99+/-1.57 and 4.86+/-1.37, respectively. Accordingly, high (e.g. 50 fold) and low (e.g. 1.25 fold) dilutions were associated with statistically significant differences in kinetic values (p <0.05). Varying DEX concentration (10-100 microM) was not associated with significant changes in k(inact) and KI values when a five-fold dilution was used (with the exception of a lower KI at 10 microM DEX). High dilution was also shown to reduce non-specific microsomal binding of MDMA. The changes in the two kinetic parameters were dependent on the experimental procedure and shown to be unlikely to have a material influence on the maximum inhibition of CYP2D6 expected in vivo after typical recreational doses of MDMA (50-100 mg), since the potency of inhibition was high. The different values of the kinetic parameters were predicted to have a marginal influence on the time for recovery of enzyme activity following re-synthesis of CYP2D6.

摘要

摇头丸(3,4-亚甲基二氧基甲基苯丙胺,俗称迷魂药)是细胞色素P450 2D6(CYP2D6)一种有效的基于机制的抑制剂(MBI),在体外可导致该酶的准不可逆抑制。对这一现象体内影响的评估取决于定义体外抑制作用的参数估计的准确性,即k(inact)(最大抑制率)和KI(失活常数)。这些值通过两个步骤确定,首先将酶与抑制剂预孵育(酶失活),然后稀释并进一步孵育,以用探针底物测量残余酶活性。本研究的目的是评估使用重组表达的CYP2D6时,不同稀释度和探针底物浓度对k(inact)和KI估计值的影响。通过将右美沙芬(DEX)转化为右啡烷(DOR)来测量酶活性。稀释因子为1.25、2、5、10、25和50(30 microM的DEX)时,k(inact)(min-1)的平均(±SE)值分别为0.20±0.06、0.21±0.05、0.31±0.06、0.37±0.11、0.51±0.10和0.58±0.08,KI( microM)值(校正非特异性微粒体结合后)分别为2.22±1.90、2.80±1.34、5.78±2.07、6.36±2.93、3.99±1.57和4.86±1.37。因此,高(如50倍)和低(如1.25倍)稀释与动力学值的统计学显著差异相关(p<0.05)。当使用五倍稀释时,改变DEX浓度(10-100 microM)与k(inact)和KI值的显著变化无关(10 microM DEX时KI较低的情况除外)。高稀释还显示可减少摇头丸的非特异性微粒体结合。两个动力学参数的变化取决于实验程序,并且显示不太可能对典型娱乐剂量摇头丸(50-100 mg)后体内预期的CYP2D6最大抑制产生实质性影响,因为抑制效力很高。预计动力学参数的不同值对CYP2D6重新合成后酶活性恢复时间的影响很小。

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