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肝细胞色素P450的表型转换与表型分析:对预测性精准医学和个性化治疗的意义。

Phenoconversion and phenotyping of hepatic cytochrome P450: Implications in predictive precision medicine and personalized therapy.

作者信息

Ali Shakir, Aygun Cem, Bahcecioglu Ibrahim Halil

机构信息

Department of Biochemistry, School of Chemical and Life Sciences, Jamia Hamdard, Hamdard Nagar, New Delhi, India.

Department of Gastroenterology, Acibadem Dr. Sinasi Can Kadikoy Hospital, Istanbul, Turkiye.

出版信息

Hepatol Forum. 2024 Sep 10;6(3):121-128. doi: 10.14744/hf.2023.2023.0047. eCollection 2025.

Abstract

Drug dose efficacy/toxicity depends on a number of factors including genetic and nongenetic factors, a pre-existing disease, and coadministration of other substances and drugs. Cytochrome P450 (CYP) proteins play a crucial role in drug metabolism where they catalyse a number of Phase I oxidation reactions. Concurrently administered drugs and substances, besides the CYP genotype are crucial and can induce/inhibit the CYP activity, thus affecting drug biotransformation and its bioavailability, compromising with drug efficacy, or even causing toxicity due to slow metabolism. Hepatic CYP is particularly important as it metabolizes about ¾ of all drugs. Determining the metabolite/drug ratio ( CYP phenotyping) can be an important tool that can help in drug dose optimization for the drugs metabolized by specific CYPs as the genotype may not always reflect the true enzyme activity. Clinically important CYP isoforms commonly reported in drug oxidation reactions and which mainly include CYP3A4/5, CYP2C19, CYP2C9 and CYP2D6 need to be analysed for their activity , in at least the cases of unpredictable treatment outcomes. The activity levels of other less commonly reported but no less important CYPs, such as CYP2B6, one of the most polymorphic human CYP involved in the metabolism of artemisinin, bupropion, cyclophosphamide, efavirenz, ketamine and methadone, and reported for its high inter-individuals and within-individual variability may also be determined on a case-to-case basis. This review highlights the variations in CYP activity due to various reasons and the importance of phenotyping over genotype in ascertaining drug bioavailability and dose optimization, implicating metabolite/drug ratio determination for personalized treatment of especially chronic liver disease patients.

摘要

药物剂量的疗效/毒性取决于多种因素,包括遗传和非遗传因素、既往疾病以及其他物质和药物的联合使用。细胞色素P450(CYP)蛋白在药物代谢中起着关键作用,它们催化许多I相氧化反应。除CYP基因型外,同时使用的药物和物质也很关键,它们可以诱导/抑制CYP活性,从而影响药物的生物转化及其生物利用度,损害药物疗效,甚至由于代谢缓慢而导致毒性。肝脏CYP尤为重要,因为它代谢约四分之三的所有药物。确定代谢物/药物比率(CYP表型分析)可能是一种重要工具,有助于优化由特定CYP代谢的药物的剂量,因为基因型可能并不总是反映真正的酶活性。在至少治疗结果不可预测的情况下,需要分析在药物氧化反应中常见的临床重要CYP同工酶,主要包括CYP3A4/5、CYP2C19、CYP2C9和CYP2D6的活性。其他不太常见但同样重要的CYPs,如CYP2B6,其活性水平也可根据具体情况确定。CYP2B6是参与青蒿素、安非他酮、环磷酰胺、依非韦伦、氯胺酮和美沙酮代谢的最具多态性的人类CYP之一,其个体间和个体内变异性都很高。本综述强调了由于各种原因导致的CYP活性变化,以及在确定药物生物利用度和剂量优化方面表型分析优于基因型分析的重要性,这意味着代谢物/药物比率测定对于特别是慢性肝病患者的个性化治疗具有重要意义。

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