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内源性类固醇对人肝微粒体CYP3A4介导的药物代谢的影响。

Effects of endogenous steroids on CYP3A4-mediated drug metabolism by human liver microsomes.

作者信息

Nakamura Hiroyoshi, Nakasa Hiromitsu, Ishii Itsuko, Ariyoshi Noritaka, Igarashi Takashi, Ohmori Shigeru, Kitada Mitsukazu

机构信息

Division of Pharmacy, Chiba University Hospital, Chuo-ku, Chiba, Japan.

出版信息

Drug Metab Dispos. 2002 May;30(5):534-40. doi: 10.1124/dmd.30.5.534.

Abstract

In the present study, we investigated the effects of 14 endogenous steroids on the CYP3A4-mediated drug metabolism by human liver microsomes in vitro. Nevirapine (NVP) 2-, 12-hydroxylations, carbamazepine (CBZ) 10,11-epoxidation, triazolam (TZM) 1'-, 4-hydroxylations, erythromycin (EM) N-demethylation, and 2-sulphamoylacetylphenol (SMAP) formation from zonisamide (ZNS) were investigated. The activities of the NVP 2-, 12-hydroxylations, the CBZ 10,11-epoxidation, and the TZM 4-hydroxylation were activated by endogenous androgens, such as androstenedione (AND), testosterone, and dehydroepiandrosterone. However, these androgens inhibited EM N-demethylation, TZM 1'-hydroxylation, and SMAP formation. To understand the mechanisms of these effects of androgens on CYP3A4 activities, we performed a kinetic analysis of the metabolism of CBZ and ZNS in the presence or absence of AND using the modified two-site equation model. The addition of AND to the reaction mixture caused a drastic increase in the activity of CBZ 10,11-epoxidase, especially at a low substrate concentration, and resulted in a change in the kinetics from the sigmoid to Michaelis-Menten type. On the other hand, the metabolism of ZNS was strongly inhibited by AND, although no allosteric change was observed in this case. These data demonstrate that endogenous steroids, especially androgens, strongly affect CYP3A4-mediated drug metabolism in vitro. The postulated mechanisms of the interactions between AND and CBZ or ZNS are discussed.

摘要

在本研究中,我们在体外研究了14种内源性甾体对人肝微粒体中CYP3A4介导的药物代谢的影响。研究了奈韦拉平(NVP)的2-、12-羟基化,卡马西平(CBZ)的10,11-环氧化,三唑仑(TZM)的1'-、4-羟基化,红霉素(EM)的N-去甲基化,以及唑尼沙胺(ZNS)生成2-氨磺酰乙酰苯酚(SMAP)的过程。NVP的2-、12-羟基化,CBZ的10,11-环氧化,以及TZM的4-羟基化活性被内源性雄激素如雄烯二酮(AND)、睾酮和脱氢表雄酮激活。然而,这些雄激素抑制EM的N-去甲基化、TZM的1'-羟基化以及SMAP的生成。为了解雄激素对CYP3A4活性的这些影响机制,我们使用改良的双位点方程模型对存在或不存在AND时CBZ和ZNS的代谢进行了动力学分析。向反应混合物中添加AND导致CBZ 10,11-环氧化酶活性急剧增加,尤其是在低底物浓度下,并导致动力学从S形变为米氏类型。另一方面,AND强烈抑制ZNS的代谢,尽管在这种情况下未观察到变构变化。这些数据表明内源性甾体,尤其是雄激素,在体外强烈影响CYP3A4介导的药物代谢。讨论了AND与CBZ或ZNS之间相互作用的推测机制。

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