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富马酸来罗唑抑制4-酮-全反式维甲酸的代谢。

Liarozole fumarate inhibits the metabolism of 4-keto-all-trans-retinoic acid.

作者信息

Van Wauwe J, Coene M C, Cools W, Goossens J, Lauwers W, Le Jeune L, Van Hove C, Van Nyen G

机构信息

Janssen Research Foundation, Beerse, Belgium.

出版信息

Biochem Pharmacol. 1994 Feb 11;47(4):737-41. doi: 10.1016/0006-2952(94)90137-6.

Abstract

The metabolism of 4-keto-all-trans-retinoic-acid (4-keto-RA), a biologically active oxygenated metabolite of all-trans-retinoic (RA), has been examined. In vitro, incubation of [14C]4-keto-RA with hamster liver microsomes in the presence of NADPH produced two major radioactive metabolites which were more polar than the parent compound. Following isolation, appropriate derivatization and analysis by GC-MS, these compounds were tentatively identified as 2-hydroxy- and 3-hydroxy-4-ketoretinoic acid. Formation of both hydroxy-keto derivatives was suppressed by the imidazole-containing P450 inhibitor liarozole fumarate (IC50, 1.3 microM). In vitro, an i.v. injection of 4-keto-RA (20 micrograms) into rats was followed by rapid disappearance of the retinoid from plasma with a half-life of 7 min. Pretreatment with liarozole fumarate (40 mg/kg, -60 min) reduced the elimination rate of 4-keto-RA: it prolonged the plasma half-life of the retinoid to 12 min, without affecting its distribution volume. These results indicate the important role of the P450 enzyme system in the metabolism of 4-keto-RA both in vitro and in vivo. The inhibitory effect of liarozole fumarate on this metabolic process may contribute to the reported retinoid-mimetic activity of this drug.

摘要

全反式维甲酸(RA)的一种具有生物活性的氧化代谢产物4-酮基-全反式维甲酸(4-酮基-RA)的代谢情况已得到研究。在体外,[14C]4-酮基-RA与仓鼠肝微粒体在NADPH存在的情况下温育,产生了两种主要的放射性代谢产物,它们比母体化合物极性更强。分离后,经过适当的衍生化处理并通过气相色谱-质谱联用仪(GC-MS)分析,这些化合物被初步鉴定为2-羟基-和3-羟基-4-酮基维甲酸。含咪唑的细胞色素P450抑制剂富马酸来罗唑(IC50,1.3微摩尔)抑制了这两种羟基-酮基衍生物的形成。在体外,给大鼠静脉注射4-酮基-RA(20微克)后,类视黄醇迅速从血浆中消失,半衰期为7分钟。用富马酸来罗唑(40毫克/千克,-60分钟)预处理可降低4-酮基-RA的消除率:它将类视黄醇的血浆半衰期延长至12分钟,而不影响其分布容积。这些结果表明细胞色素P450酶系统在体外和体内4-酮基-RA的代谢中都起着重要作用。富马酸来罗唑对这一代谢过程的抑制作用可能有助于该药物所报道的类视黄醇模拟活性。

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