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首页> 外文期刊>Xenobiotica: the fate of foreign compounds in biological systems >Cocktail-substrate assay system for mechanism-based inhibition of CYP2C9, CYP2D6, and CYP3A using human liver microsomes at an early stage of drug development.
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Cocktail-substrate assay system for mechanism-based inhibition of CYP2C9, CYP2D6, and CYP3A using human liver microsomes at an early stage of drug development.

机译:鸡尾酒底物测定系统,用于在药物开发的早期阶段使用人肝微粒体对CYP2C9,CYP2D6和CYP3A进行基于机制的抑制。

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摘要

We established a mechanism-based inhibition cocktail-substrate assay system using human liver microsomes and drug-probe substrates that enabled simultaneous estimation of the inactivation of main cytochrome P450 (CYP) enzymes, CYP2C9, CYP2D6, and CYP3A, in drug metabolism. The inactivation kinetic parameters of typical mechanism-based inhibitors, tienilic acid, paroxetine, and erythromycin, for each enzyme in the cocktail-substrate assay were almost in agreement with the values obtained in the single-substrate assay. Using this system, we confirmed that multiple CYP inactivation caused by mechanism-based inhibitors such as isoniazid and amiodarone could be detected simultaneously. Mechanism-based inhibition potency can be estimated by the determination of the observed inactivation rate constants (k(obs)) at a single concentration of test compounds because the k(obs) of eleven CYP3A inactivators at 10 microM in the assay system nearly corresponded to k(inact)/K(I) values, an indicator of a compound's propensity to alter the activity of a CYP in vivo (R(2) = 0.97). Therefore, this cocktail-substrate assay is considered to be a powerful tool for evaluating mechanism-based inhibition at an early stage of drug development.
机译:我们使用人肝微粒体和药物探针底物建立了基于机制的抑制鸡尾酒底物测定系统,该系统能够同时估计药物代谢中主要细胞色素P450(CYP)酶,CYP2C9,CYP2D6和CYP3A的失活。鸡尾酒-底物测定法中每种酶的典型机理抑制剂,亚硝酸,帕罗西汀和红霉素的失活动力学参数几乎与单底物测定法中的值一致。使用该系统,我们证实可以同时检测到由基于机制的抑制剂(例如异烟肼和胺碘酮)引起的多种CYP失活。通过确定在单一浓度的测试化合物下观察到的失活速率常数(k(obs)),可以估计基于机理的抑制力,因为在测定系统中10 microM时有11种CYP3A失活剂的k(obs)几乎对应于k(inact)/ K(I)值,是化合物体内改变CYP活性的倾向的指标(R(2)= 0.97)。因此,这种鸡尾酒-底物测定被认为是在药物开发早期评估基于机理的抑制作用的有力工具。

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