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Stereoselective 4′-hydroxylation of phenytoin: relationship to (S)-mephenytoin polymorphism in Japanese

机译:苯妥英钠的立体选择性4-羟基化:与日语中的(S)-苯妥英钠多态性的关系

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摘要

Aims The aim of this study was to clarify whether phenytoin (PHT) stereoselective hydroxylation cosegregates with (S)-mephenytoin phenotype.Methods A single dose of PHT (100 mg) was administered orally to six healthy Japanese subjects in whom the genotype and phenotype of CYP2C19 had been determined previously. The urinary excretion profiles of the metabolites of PHT, (R)- and (S)-p-HPPH [5-(4-hydroxyphenyl)-5-phenylhydantoin] up to 36 h postdose were compared between the two groups of poor metabolizers (PMs, n=3) and extensive metabolizers (EMs, n=3) with respect to CYP2C19. CYP2C9 genotype was also determined.Results All the alleles were found to be wild type (Arg144Tyr358Ile359Gly417 ) in each subject. The mean value for cumulative urinary excretion of unchanged PHT was not significantly different between the PMs and the EMs. However, recovery of (R)-p-HPPH at 36 h was 3.5-fold lower and that of (S)-p-HPPH 1.3-fold lower in PMs than in EMs. Although the mean urinary excretion values for both metabolites were significantly lower in the PMs than in the EMs, the difference between the two groups was larger for (R)-p-HPPH. A significant negative correlation was observed between the hydroxylation index of omeprazole (the ratio between the serum concentrations of omeprazole and hydroxyomeprazole in blood samples drawn 3 h after drug intake) and the log10 0–12 h urinary recovery of (R)-p-HPPH.Conclusions In humans, the 4′-hydroxylation of PHT is highly stereoselective towards formation of the (S)-enantiomer. Thus, (S)-hydroxylation by CYP2C9 might be the major determinant of the disposition of PHT. However, these results support the hypothesis that the stereoselective hydroxylation pathway of PHT to form (R)-p-HPPH cosegregates with the CYP2C19 metabolic polymorphism.
机译:目的本研究的目的是阐明苯妥英钠(PHT)立体选择性羟基化是否与(S)-苯妥英钠表型共分离。方法对六位健康的日本受试者进行口服单剂量PHT(100 mg)的研究,他们的基因型和表型CYP2C19先前已确定。比较两组不良代谢者在给药后36小时内PHT,(R)-和(S)-p-HPPH [5-(4-羟苯基)-5-苯基乙内酰脲]代谢产物的尿排泄情况(关于CYP2C19,PMs(n = 3)和广泛代谢者(EMs,n = 3)。结果检测到所有等位基因均为野生型(Arg144Tyr358Ile359Gly417)。 PM和EM之间未改变PHT的累积尿排泄平均值没有显着差异。然而,PM中(R)-p-HPPH的回收率比EM低3.5倍,而(S)-p-HPPH的回收率低1.3倍。尽管PM中两种代谢物的平均尿排泄值均显着低于EM,但(R)-p-HPPH两组之间的差异更大。观察到奥美拉唑的羟化指数(服药后3 h抽取的血液样本中奥美拉唑与血清奥美拉唑的血药浓度之比)与log(R)-p-HPPH的log10 0-12 h的尿之间存在显着负相关。结论在人类中,PHT的4'-羟基化对(S)-对映异构体的形成具有高度立体选择性。因此,CYP2C9的(S)-羟基化可能是决定PHT分布的主要因素。但是,这些结果支持以下假设:PHT形成(R)-p-HPPH的立体选择性羟化途径与CYP2C19代谢多态性共分离。

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