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Fatal Methadone Toxicity: Potential Role of CYP3A4 Genetic Polymorphism

机译:美沙酮的致命毒性:CYP3A4基因多态性的潜在作用

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摘要

Methadone is difficult to administer as a therapeutic agent because of a wide range of interindividual pharmacokinetics, likely due to genetic variability of the CYP450 enzymes responsible for metabolism to its principal metabolite 2-ethylidene-1,5-dimethyl-3,3-diphenylpyrrolidine (EDDP). CYP3A4 is one of the primary CYP450 isoforms responsible for the metabolism of methadone to EDDP in humans. The purpose of this study was to evaluate the role of CYP3A4 genetic polymorphisms in accidental methadone fatalities. A study cohort consisting of 136 methadone-only and 92 combined methadone/benzodiazepine fatalities was selected from cases investigated at the West Virginia and Kentucky Offices of the Chief Medical Examiner. Seven single nucleotide polymorphisms (SNPs) were genotyped within the CYP3A4 gene. Observed allelic and genotypic frequencies were compared with expected frequencies obtained from The National Center for Biotechnology Information dbSNP database. SNPs rs2242480 and rs2740574 demonstrated an apparent enrichment within the methadone-only overdose fatalities compared with the control group and the general population. This enrichment was not apparent in the methadone/benzodiazepine cases for these two SNPs. Our findings indicate that there may be two or more SNPs on the CYP3A4 gene that cause or contribute to the methadone poor metabolizer phenotype.
机译:由于广泛的个体间药代动力学,美沙酮难以作为治疗剂给药,这很可能是由于负责代谢为其主要代谢物2-亚乙基-1,5-二甲基-3,3-二苯基吡咯烷的CYP450酶的遗传变异性( EDDP)。 CYP3A4是负责人体内美沙酮向EDDP代谢的主要CYP450亚型之一。这项研究的目的是评估CYP3A4基因多态性在美沙酮意外死亡中的作用。从在西弗吉尼亚州和首席医学检查官办公室调查的病例中选择了仅由136个美沙酮和92个美沙酮/苯并二氮杂combined合并死亡的研究队列。在CYP3A4基因内对七个单核苷酸多态性(SNPs)进行了基因分型。将观察到的等位基因和基因型频率与从国家生物技术信息中心dbSNP数据库获得的预期频率进行比较。与对照组和一般人群相比,SNP rs2242480和rs2740574在仅美沙酮过量死亡中显示出明显的富集。在这两个SNP的美沙酮/苯并二氮杂类病例中,这种富集并不明显。我们的发现表明,CYP3A4基因上可能存在两个或更多个SNP,这些SNP引起或促成美沙酮不良代谢者表型。

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