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首页> 外文期刊>Xenobiotica: the fate of foreign compounds in biological systems >In vivo multiple metabolic pathways for a novel G protein-coupled receptor 119 agonist DS-8500a in rats: involvement of the 1,2,4-oxadiazole ring-opening reductive reaction in livers under anaerobic conditions
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In vivo multiple metabolic pathways for a novel G protein-coupled receptor 119 agonist DS-8500a in rats: involvement of the 1,2,4-oxadiazole ring-opening reductive reaction in livers under anaerobic conditions

机译:在大鼠中的新型G蛋白偶联受体119激动剂DS-8500A的多种代谢途径:在厌氧条件下涉及肝脏肝脏中的1,2,4-氧代唑开环还原反应

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A 1,2,4-oxadiazole ring-containing compound DS-8500a was developed as a novel G protein-coupled receptor 119 agonist. In vivo metabolic fates of [C-14]DS-8500a differently radiolabeled in the benzene ring or benzamide side carbon in rats were investigated. Differences in mass balances were observed, primarily because after the oxadiazole ring-opening and subsequent ring-cleavage small-molecule metabolites containing the benzene side were excreted in the urine, while those containing the benzamide side were excreted in the bile. DS-8500a was detected at trace levels in urine and bile, demonstrating extensive metabolism prior to urinary/biliary excretion. At least 16 metabolite structures were proposed in plasma, urine, and bile samples from rats treated with [C-14]DS-8500a. Formation of a ring-opened metabolite (reduced DS-8500a) in hepatocytes of humans, monkeys, and rats was confirmed; however, it was not affected by typical inhibitors of cytochrome P450s, aldehyde oxidases, or carboxylesterases in human hepatocytes. Extensive formation of the ring-opened metabolite was observed in human liver microsomes fortified with an NADPH-generating system under anaerobic conditions. These results suggest an in vivo unique reductive metabolism of DS-8500a is mediated by human non-cytochrome P450 enzymes.
机译:含1,2,4-氧代唑环的化合物DS-8500A作为新的G蛋白偶联受体119激动剂。研究了在大鼠中不同放射性标记的[C-14] DS-8500A的体内代谢序列。观察到质量平衡的差异,主要是因为在尿液中排出含有苯侧的恶臭环开口和随后的环形裂解的小分子代谢物,而含有苯甲酰胺侧的那些在胆汁中排出。在尿液和胆汁中的痕量水平检测到DS-8500A,在尿/胆汁排泄之前展示广泛的代谢。用[C-14] DS-8500A处理的大鼠等离子体,尿液和胆汁样品中提出了至少16种代谢物结构。确认了在人,猴子和大鼠肝细胞中形成环形的代谢物(DS-8500a);然而,它不受人肝细胞中的细胞色素P450s,醛氧化酶或羧基酯酶的典型抑制剂的影响。在厌氧条件下用NADPH发电系统强化的人肝微粒体观察到环形开环代谢物的广泛形成。这些结果表明DS-8500A的体内独特的还原代谢由人非细胞色素P450酶介导。

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