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人肝细胞色素P450对三甲双酮的代谢:CYP2E1参与的证据。

Trimethadione metabolism by human liver cytochrome P450: evidence for the involvement of CYP2E1.

作者信息

Kurata N, Nishimura Y, Iwase M, Fischer N E, Tang B K, Inaba T, Yasuhara H

机构信息

Department of Pharmacology, School of Medicine, Showa University, Tokyo, Japan.

出版信息

Xenobiotica. 1998 Nov;28(11):1041-7. doi: 10.1080/004982598238930.

Abstract
  1. Caucasian liver samples were used in this study. N-demethylation of trimethadione (TMO) to dimethadione (DMO) was monitored in the presence of chemical inhibitors of CYPs, such as fluconazole, quinidine, dimethyl-nitrosamine, acetaminophen, phenacetin, chlorzoxazone and mephenytoin. Trimethadione N-demethylation was selectively inhibited by dimethylnitrosamine and chlorzoxazone (> 50%) and weakly inhibited by tolbutamide (12%) and fluconazole (22%), whereas other inhibitors showed no effect. This result suggested that TMO metabolism to DMO is mainly mediated by CYP2E1 and marginally by CYP2C and CYP3A4. 2. Fifteen human livers were screened and interindividual variability of TMO N-demethylation activity was 3-fold. Chlorzoxazone 6-hydroxylation activity was also measured and both activities were significantly correlated (r=0.735, p < 0.01). 3. DMO production by human cDNA expressed CYP enzymes was observed mainly for CYP2E1 (10.8 nmol/tube), marginally for CYP2C8 (0.22 nmol/tube) and not detectable for other CYP enzymes. 4. These results indicate that TMO metabolism is primarily catalysed by CYP2E1 and that trimethadione would be a suitable selective probe drug for the estimation of human CYP2E1 activity in vivo.
摘要
  1. 本研究使用了高加索人的肝脏样本。在细胞色素P450(CYP)的化学抑制剂存在的情况下,监测了三甲双酮(TMO)向二甲双酮(DMO)的N-去甲基化反应,这些抑制剂包括氟康唑、奎尼丁、二甲基亚硝胺、对乙酰氨基酚、非那西丁、氯唑沙宗和美芬妥因。三甲双酮的N-去甲基化反应被二甲基亚硝胺和氯唑沙宗选择性抑制(>50%),被甲苯磺丁脲(12%)和氟康唑(22%)微弱抑制,而其他抑制剂则无作用。该结果表明,TMO向DMO的代谢主要由CYP2E1介导,少量由CYP2C和CYP3A4介导。2. 对15个人类肝脏进行了筛查,TMO N-去甲基化活性的个体间差异为3倍。还测量了氯唑沙宗6-羟化活性,且两种活性显著相关(r = 0.735,p < 0.01)。3. 观察到人类cDNA表达的CYP酶产生DMO的情况,主要是CYP2E1(10.8 nmol/管),少量是CYP2C8(0.22 nmol/管),其他CYP酶未检测到。4. 这些结果表明,TMO代谢主要由CYP2E1催化,且三甲双酮将是用于体内评估人类CYP2E1活性的合适的选择性探针药物。

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