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酮康唑可抑制全反式维甲酸的体内外代谢。

Ketoconazole inhibits the in vitro and in vivo metabolism of all-trans-retinoic acid.

作者信息

Van Wauwe J P, Coene M C, Goossens J, Van Nijen G, Cools W, Lauwers W

机构信息

Life Sciences Department, Janssen Research Foundation, Beerse, Belgium.

出版信息

J Pharmacol Exp Ther. 1988 May;245(2):718-22.

PMID:3367313
Abstract

Ketoconazole, an antifungal agent and inhibitor of certain mammalian cytochrome P-450-dependent enzymes, was studied for its effects on the in vitro and in vivo metabolism of all-trans-retinoic acid (RA). In vitro, ketoconazole (Ki = 0.75 microM) inhibited, in an apparently competitive manner, the cytochrome P-450-mediated metabolism to 4-hydroxy- and 4-keto-retinoic acids by hamster liver microsomes. In vivo, ketoconazole suppressed the formation of polar RA metabolites by normal rats dosed intrajugularly with 200 ng of [3H]RA. After p.o. treatment with ketoconazole (2.5-40 mg/kg) given 1 hr before the [3H]RA injection, the radioactivity extracted from the liver consisted of 25 to 50% polar metabolites (control 66 +/- 1%) and 50 to 75% undegraded RA (control 34 +/- 1%) as evidenced by reverse-phase high-performance liquid chromatography. Time course experiments showed that ketoconazole's inhibitory effects lasted for 3 hr. Our data indicate the quantitative importance of the cytochrome P-450 enzymatic pathway in the biotransformation of RA. They also suggest that ketoconazole is capable of prolonging the biological half-life of RA and of improving the tissue levels of this compound.

摘要

酮康唑是一种抗真菌剂,也是某些哺乳动物细胞色素P - 450依赖性酶的抑制剂,研究了其对全反式维甲酸(RA)体外和体内代谢的影响。在体外,酮康唑(Ki = 0.75 microM)以明显竞争性的方式抑制仓鼠肝微粒体将细胞色素P - 450介导的代谢转化为4 - 羟基和4 - 酮基维甲酸。在体内,酮康唑抑制了正常大鼠经颈内静脉注射200 ng [3H]RA后极性RA代谢物的形成。在[3H]RA注射前1小时口服酮康唑(2.5 - 40 mg/kg)进行处理后,通过反相高效液相色谱法证明,从肝脏中提取的放射性物质由25%至50%的极性代谢物(对照为66 +/- 1%)和50%至75%的未降解RA(对照为34 +/- 1%)组成。时间进程实验表明酮康唑的抑制作用持续3小时。我们的数据表明细胞色素P - 450酶促途径在RA生物转化中的定量重要性。它们还表明酮康唑能够延长RA的生物半衰期并提高该化合物的组织水平。

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