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Functional assessment of CYP3A4 allelic variants on lidocaine metabolism in vitro

机译: CYP3A4 等位基因变异对利多卡因体外代谢的功能评估

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Aim: Human cytochrome P450 3A4 is the most abundant isoform of P450 enzyme in the liver. It plays an important role in the metabolism of wide variety of xenobiotic and endogenous substrates. So far, there are few reports about the functional characterization of CYP3A4 variants in terms of specific substrates. The aim of this study was to systematically investigate the genetic polymorphisms of 23 CYP3A4 alleles and evaluate their catalytic activities on the metabolism of lidocaine in vitro. Methods and results: The wild-type and 22 CYP3A4 variants were expressed in Spodoptera frugiperda 21 insect cells. Then the insect microsomes were incubated with the CYP3A4-specific substrate lidocaine. Reactions were performed with 50–3,000 μM for 60 min at 37°C. Lidocaine and its metabolite monoethylglycinexylidide were analyzed by ultra-performance liquid chromatography-tandem mass spectrometry system. Of the 23 CYP3A4 allelic variants tested, 2 variants ( CYP3A4 * 17 and CYP3A4 * 30 ) had no detectable enzyme activity; and 5 variants ( CYP3A4 * 2 , CYP3A4 * 5 , CYP3A4 * 9 , CYP3A4 * 16 and CYP3A4 * 24 ) showed significantly decreased intrinsic clearance values compared with wild-type CYP3A4 * 1 . Conclusion: As the first study of all these CYP3A4 alleles for lidocaine metabolism, our results in vitro assessment may provide novel insights into the allele-specific and substrate-specific activity of CYP3A4 and may also offer a reference to the personalized treatment of lidocaine in a clinical setting.
机译:目的:人细胞色素P450 3A4是肝脏中P450酶最丰富的亚型。它在多种异种和内源性底物的代谢中起重要作用。迄今为止,关于CYP3A4变异体在特定底物方面的功能表征的报道很少。这项研究的目的是系统地研究23个CYP3A4等位基因的遗传多态性,并评估它们对利多卡因代谢的体外催化活性。方法和结果:野生型和22种CYP3A4变异体在Spodoptera frugiperda 21昆虫细胞中表达。然后将昆虫微粒体与CYP3A4特异性底物利多卡因一起孵育。在37°C下以50–3,000μM进行反应60分钟。采用超高效液相色谱-串联质谱系统分析了利多卡因及其代谢产物单乙基甘氨酰二氧乙酸。在所测试的23个CYP3A4等位基因变体中,有2个变体(CYP3A4 * 17和CYP3A4 * 30)没有可检测的酶活性。和5个变体(CYP3A4 * 2,CYP3A4 * 5,CYP3A4 * 9,CYP3A4 * 16和CYP3A4 * 24)相比,野生型CYP3A4 * 1显着降低了内部清除率。结论:作为对所有这些CYP3A4等位基因进行利多卡因代谢的首次研究,我们的体外评估结果可能为CYP3A4的等位基因特异性和底物特异性活性提供新的见解,也可能为个性化治疗利多卡因提供参考。临床上。

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