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CYP3A4 变体对环孢素代谢的功能评估及潜在药物相互作用

Functional evaluation of cyclosporine metabolism by CYP3A4 variants and potential drug interactions.

作者信息

Kong Qihui, Gao Nanyong, Wang Yahui, Hu Guoxin, Qian Jianchang, Chen Bingbing

机构信息

Institute of Molecular Toxicology and Pharmacology, School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, Zhejiang, China.

出版信息

Front Pharmacol. 2023 Jan 6;13:1044817. doi: 10.3389/fphar.2022.1044817. eCollection 2022.

Abstract

The aim of this study is to investigate the effects of CYP3A4 genetic polymorphisms on the metabolism of cyclosporine (CsA) and identify drugs that interact with CsA. An enzymatic incubation system was developed to evaluate the kinetic parameters of CYP3A4 on CsA catalysis. A total of 132 drugs were screened to identify potential drug-drug interactions. Sprague-Dawley rats were used to determine the interaction between CsA and nimodipine and nisoldipine. The metabolite AM1 was measured by ultra-performance liquid chromatography-tandem mass spectrometry. The results demonstrate that 16 CYP3A4 variants (CYP3A4.7, 8, 9, 12, 13, 14, 16, 18, 19, 23, 24, 28, 31, 32, 33, and 34) have a lower metabolic capacity for CsA, ranging from 7.19% to 72.10%, than CYP3A4.1. In contrast, the relative clearance rate of CYP3A4.5 is significantly higher than that of CYP3A4.1. Moreover, CYP3A4.20 loses its catalytic ability, and five other variants have no significant difference. A total of 12 drugs, especially calcium channel blockers, were found to remarkably inhibit the metabolism of CsA with an inhibitory rate of over 80%. Nimodipine inhibits the activity of CsA in rat liver microsomes with an IC of 20.54 ± 0.93 μM, while nisoldipine has an IC of 16.16 ± 0.78 μM. In , three groups of Sprague-Dawley rats were administered CsA with or without nimodipine or nisoldipine; the AUC and AUC of CsA were significantly increased in the nimodipine group but not obviously in the nisoldipine group. Mechanistically, the inhibition mode of nimodipine on cyclosporine metabolism is a mixed inhibition. Our data show that gene polymorphisms of CYP3A4 and nimodipine remarkably affect the metabolism of CsA, thus providing a reference for the precise administration of CsA.

摘要

本研究旨在探讨细胞色素P450 3A4(CYP3A4)基因多态性对环孢素(CsA)代谢的影响,并鉴定与CsA相互作用的药物。开发了一种酶孵育系统来评估CYP3A4对CsA催化的动力学参数。共筛选了132种药物以确定潜在的药物-药物相互作用。使用Sprague-Dawley大鼠来确定CsA与尼莫地平和尼索地平之间的相互作用。代谢产物AM1通过超高效液相色谱-串联质谱法测定。结果表明,16种CYP3A4变体(CYP3A4.7、8、9、12、13、14、16、18、19、23、24、28、31、32、33和34)对CsA的代谢能力低于CYP3A4.1,范围为7.19%至72.10%。相比之下,CYP3A4.5的相对清除率显著高于CYP3A4.1。此外,CYP3A4.20失去了催化能力,其他五种变体无显著差异。共发现12种药物,尤其是钙通道阻滞剂,能显著抑制CsA的代谢,抑制率超过80%。尼莫地平在大鼠肝微粒体中抑制CsA的活性,半数抑制浓度(IC)为20.54±0.93μM,而尼索地平的IC为16.16±0.78μM。在实验中,三组Sprague-Dawley大鼠分别给予CsA加或不加尼莫地平或尼索地平;尼莫地平组中CsA的曲线下面积(AUC)显著增加,而尼索地平组中则无明显变化。从机制上讲,尼莫地平对环孢素代谢的抑制模式为混合抑制。我们的数据表明,CYP3A4基因多态性和尼莫地平显著影响CsA的代谢,从而为CsA的精准给药提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/472c/9852833/0ba2ff4a95ac/fphar-13-1044817-g001.jpg

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