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苯妥英在人肝微粒体/胞质溶胶中形成二羟基代谢物:细胞色素P450 2C9、2C19和3A4的作用。

Formation of a dihydroxy metabolite of phenytoin in human liver microsomes/cytosol: roles of cytochromes P450 2C9, 2C19, and 3A4.

作者信息

Komatsu T, Yamazaki H, Asahi S, Gillam E M, Guengerich F P, Nakajima M, Yokoi T

机构信息

Faculty of Pharmaceutical Sciences, Kanazawa University, Kanazawa, Japan.

出版信息

Drug Metab Dispos. 2000 Nov;28(11):1361-8.

Abstract

Formation of four oxidative metabolites from the anticonvulsant drug phenytoin (DPH) catalyzed by human liver microsomal cytochrome P450 (P450) enzymes was determined simultaneously. Under the conditions in which linearity for formation of 4'-hydroxylated DPH (4'-HPPH; main metabolite) was observed, human liver cytosol increased microsome-mediated DPH oxidation. 3',4'-Dihydroxylated product (3', 4'-diHPPH) formation was 10 to 40% of total DPH oxidation in the presence of liver cytosol. 3'-Hydroxy DPH formation was catalyzed by only one of the human liver microsomal samples examined and 3', 4'-dihydrodiol formation could not be detected in all samples. In the presence of liver cytosol, 3',4'-diHPPH formation activity from 100 microM 4'-HPPH was correlated with testosterone 6beta-hydroxylation activity and CYP3A4 content. However, 3', 4'-diHPPH formation using 1 or 10 microM 4'-HPPH as a substrate was not correlated with contents of any P450s or marker activities. Of 10 cDNA-expressed human P450 enzymes examined, CYP2C19, CYP2C9, and CYP3A4 catalyzed 3',4'-diHPPH formation from the primary hydroxylated metabolites (3'-hydroxy-DPH and 4'-HPPH). Fluvoxamine and anti-CYP2C antibody inhibited 3',4'-diHPPH formation from 10 microM 4'-HPPH in a human liver sample that contained relatively high levels of CYP2C, whereas ketoconazole and anti-CYP3A antibody showed inhibitory effects on the activities in liver microsomal samples in which CYP3A4 levels were relatively high. These results suggest that CYP2C9, CYP2C19, and CYP3A4 all have catalytic activities in 3',4'-diHPPH formation from primary hydroxylated metabolites in human liver and that the hepatic contents of these three P450 forms determine which P450 enzymes play major roles of DPH oxidation in individual humans.

摘要

同时测定了人肝微粒体细胞色素P450(P450)酶催化抗惊厥药物苯妥英(DPH)生成四种氧化代谢物的情况。在观察到4'-羟基化DPH(4'-HPPH;主要代谢物)生成呈线性的条件下,人肝细胞溶胶增加了微粒体介导的DPH氧化。在肝细胞溶胶存在的情况下,3',4'-二羟基化产物(3',4'-diHPPH)的生成占总DPH氧化的10%至40%。在所检测的人肝微粒体样品中,只有一个样品催化生成3'-羟基DPH,且在所有样品中均未检测到3',4'-二氢二醇的生成。在肝细胞溶胶存在的情况下,100微摩尔4'-HPPH生成3',4'-diHPPH的活性与睾酮6β-羟基化活性及CYP3A4含量相关。然而,以1或10微摩尔4'-HPPH作为底物生成3',4'-diHPPH的活性与任何P450的含量或标记活性均无关联。在所检测的10种经cDNA表达的人P450酶中,CYP2C19、CYP2C9和CYP3A4催化由初级羟基化代谢物(3'-羟基-DPH和4'-HPPH)生成3',4'-diHPPH。氟伏沙明和抗CYP2C抗体抑制了来自含有相对高水平CYP2C的人肝样品中10微摩尔4'-HPPH生成3',4'-diHPPH的反应,而酮康唑和抗CYP3A抗体对CYP3A4水平相对较高的肝微粒体样品中的活性有抑制作用。这些结果表明,CYP2C9、CYP2C19和CYP3A4在人肝中均具有从初级羟基化代谢物生成3',4'-diHPPH的催化活性,且这三种P450形式在肝脏中的含量决定了在个体中哪种P450酶在DPH氧化中起主要作用。

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