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Genistein metabolism in liver microsomes of Wistar and mutant TR(-)-rats.

机译:Wistar和突变体TR(-)-大鼠肝脏微粒体中的染料木素代谢。

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In mutant TR(-)-rats lack of the canalicular multispecific organic anion transporter prevents the biliary excretion of various phase II conjugates. In order to investigate whether this rat strain expresses high amounts of phase-I metabolic enzymes to compensate for the deficiency an in vitro study using liver microsomes of control and TR(-)-rats was conducted. While liver microsomes of non-mutant Wistar rats (control) have a higher total cytochrome P450 content, no difference is found for NADPH-reductase. Expression of cytochrome P450 (CYP) isoforms CYP1A2, 2D, and 2E1 is equal in both rat strains. CYP2B1/2 and 3A1/2, however, are significantly impaired in livers of TR(-)-rats. The CYP dependent metabolism of genistein (GEN), a widely used inhibitor of the tyrosinekinase, was studied in TR(-)- and control rat liver microsomes. Three metabolites (M1-M3) were quantified by HPLC, revealing a lower amount of M2 and M3 in TR(-)-rats. Phenobarbital-pretreatment increased the formation of M1-M3 in both rat strains (2-4 fold). Dexamethasone, a specific inducer of CYP 3A1/A2 in male rats caused an even higher induction of M1-M3 (up to 20 fold) particularly in TR(-)-rats indicating the involvement of CYP3A isozymes in genistein metabolism. Phase I-metabolism may compensate for the lack of genistein-glucuronide elimination in TR(-)-rats.
机译:在突变体TR(-)-大鼠中,缺少小管多特异性有机阴离子转运蛋白阻止了各种II期结合物的胆汁排泄。为了研究该大鼠品系是否表达大量的I相代谢酶以弥补该缺陷,进行了使用对照和TR(-)-大鼠肝微粒体的体外研究。虽然非突变Wistar大鼠(对照)的肝微粒体具有较高的总细胞色素P450含量,但NADPH还原酶没有发现差异。在两种大鼠品系中,细胞色素P450(CYP)亚型CYP1A2、2D和2E1的表达均相等。但是,CYP2B1 / 2和3A1 / 2在TR(-)-大鼠的肝脏中明显受损。在TR(-)-和对照大鼠肝微粒体中研究了染料木素(GEN)(一种广泛使用的酪氨酸激酶抑制剂)的CYP依赖性代谢。 HPLC定量了三种代谢物(M1-M3),发现TR(-)-大鼠中M2和M3的含量较低。苯巴比妥预处理可增加两种大鼠品系中M1-M3的形成(2-4倍)。地塞米松是雄性大鼠中CYP 3A1 / A2的特异诱导剂,对M1-M3的诱导甚至更高(最多20倍),特别是在TR(-)-大鼠中,这表明CYP3A同工酶参与了染料木黄酮的代谢。 I期新陈代谢可能弥补了TR(-)-大鼠中染料木素-葡糖醛酸消除的缺乏。

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