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包括小鼠、仓鼠、大鼠、兔子、狗、猴子和人类在内的各种动物肝脏的体内和体外三甲双酮氧化活性。

In vivo and in vitro trimethadione oxidation activity of the liver from various animal species including mouse, hamster, rat, rabbit, dog, monkey and human.

作者信息

Tanaka E, Ishikawa A, Horie T

机构信息

Institute of Community Medicine, University of Tsukuba, Ibaraki-ken, Japan.

出版信息

Hum Exp Toxicol. 1999 Jan;18(1):12-6. doi: 10.1177/096032719901800102.

Abstract

Trimethadione (TMO) has the properties required of a probe drug for the evaluation of hepatic drug-oxidizing capacity and, in this study, we have summarized the in vivo and in vitro metabolism of TMO in various animal species including mouse, hamster, rat, rabbit, dog, monkey and human. In the in vivo study, the plasma TMO level was measured after intravenous or oral (human) administration of TMO at a dose of 4 mg/kg to various animal species. The rate of TMO metabolic clearance in these animal species in vivo was in the order mouse > hamster > rat > rabbit > dog > monkey > human. In the in vitro study, species differences were observed in the cytochrome P450 (P450) content and drug-oxidizing enzyme activity. The content of P450 was monkey> mouse > dog > rabbit > hamster > rat > human. On the other hand, TMO N-demethylation was in the order mouse > hamster > rat > rabbit > dog > monkey > human. There was a good correlation between the mean total body clearance of TMO (in vivo) and the mean TMO N-demethylase activity (in vitro) (y=1.7 x +0.11, r=0.965, P < 0.001). These results show that TMO is a probe agent with metabolic and pharmacokinetic characteristics making it attractive for the in vivo and in vitro characterization of metabolic activity in various animal species.

摘要

三甲双酮(TMO)具有作为评估肝脏药物氧化能力的探针药物所需的特性。在本研究中,我们总结了TMO在包括小鼠、仓鼠、大鼠、兔子、狗、猴子和人类在内的各种动物体内和体外的代谢情况。在体内研究中,以4mg/kg的剂量对各种动物静脉注射或口服(人类)TMO后,测量血浆TMO水平。这些动物体内TMO的代谢清除率顺序为小鼠>仓鼠>大鼠>兔子>狗>猴子>人类。在体外研究中,观察到细胞色素P450(P450)含量和药物氧化酶活性存在种属差异。P450的含量顺序为猴子>小鼠>狗>兔子>仓鼠>大鼠>人类。另一方面,TMO的N-去甲基化顺序为小鼠>仓鼠>大鼠>兔子>狗>猴子>人类。TMO的平均全身清除率(体内)与平均TMO N-去甲基酶活性(体外)之间存在良好的相关性(y = 1.7x + 0.11,r = 0.965,P < 0.001)。这些结果表明,TMO是一种具有代谢和药代动力学特征的探针剂,使其在各种动物体内和体外代谢活性表征方面具有吸引力。

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