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EFFECTS OF THE ANTIFUNGAL IMIDAZOLE KETOCONAZOLE ON CYP1A AND CYP3A IN RAINBOW TROUT AND KILLIFISH

机译:抗真菌咪唑酮康唑对虹鳟鱼和杀鲑鱼CYP1A和CYP3A的影响

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摘要

The use of N-substituted imidazoles is widespread, and imidazole and triazole fungicides have been detected in the aquatic environment and shown to bioaccumulate in fish. We have investigated effects of the model imidazole, ketoconazole, on drug-metabolizing cytochrome P450 (CYP) forms. We focused on cytochrome P4501A (CYP1A) and cytochrome P4503A (CYP3A) expression and activities in juvenile rainbow trout and in adult killifish. The CYP1A expression (mRNA, protein) and activity was induced in rainbow trout, whereas in killifish no effect of ketoconazole on CYP1A protein expression was observed. A biphasic dose-response relationship was observed between ketoconazole exposure and hepatic CYP1 A-mediated ethoxyresorufin O-deethy-lase (EROD) activity in rainbow trout in vitro and in vivo, implying that higher doses of ketoconazole inhibit CYP1A activities. Slight induction of CYP3A protein levels was observed in rainbow trout exposed in vivo to ketoconazole. However, the CYP3A-mediated benzyloxy-4-[trifluoromethyl]-coumarin (BFC) O-debenzyloxylase activity was reduced in rainbow trout and killifish treated with ketoconazole. In vitro inhibition studies confirmed that ketoconazole was a potent inhibitor of both CYP3A and CYP1A enzyme activities in these species. This study showed that ketoconazole induced CYP1A and CYP3A expression in rainbow trout. However, the most pronounced effect of ketoconazole was a 60 to 90% decrease in CYP3A catalytic activities in rainbow trout and in killifish.
机译:N-取代的咪唑的使用十分普遍,并且在水生环境中已发现咪唑和三唑类杀菌剂,并显示出它们在鱼类中的生物蓄积性。我们已经研究了模型咪唑,酮康唑对药物代谢细胞色素P450(CYP)形式的影响。我们的研究重点是幼体虹鳟鱼和成年金鱼鱼中的细胞色素P4501A(CYP1A)和细胞色素P4503A(CYP3A)表达和活性。在虹鳟鱼中诱导了CYP1A表达(mRNA,蛋白质)和活性,而在双鱼中未观察到酮康唑对CYP1A蛋白表达的影响。在体外和体内虹吸鳟鱼中观察到酮康唑暴露与肝CYP1A介导的乙氧基间苯二酚O-脱氧酶(EROD)活性之间存在两相剂量-反应关系,这表明较高剂量的酮康唑可抑制CYP1A活性。在体内暴露于酮康唑的虹鳟鱼中观察到CYP3A蛋白水平的轻微诱导。然而,CYP3A介导的苄鳟鱼和用酮康唑处理的比目鱼中的苄氧基-4- [三氟甲基]-香豆素(BFC)O-脱苄氧基化酶活性降低。体外抑制研究证实,酮康唑是这些物种中CYP3A和CYP1A酶活性的有效抑制剂。本研究表明酮康唑诱导虹鳟鱼体内CYP1A和CYP3A的表达。然而,酮康唑的最明显作用是虹鳟鱼和kill鱼中CYP3A催化活性降低60%至90%。

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