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首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Metabolism of 2-substituted quinolines with antileishmanial activity studied in vitro with liver microsomes, hepatocytes and recombinantly expressed enzymes analyzed by LC/MS.
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Metabolism of 2-substituted quinolines with antileishmanial activity studied in vitro with liver microsomes, hepatocytes and recombinantly expressed enzymes analyzed by LC/MS.

机译:用肝微粒体,肝细胞和通过LC / MS分析的重组表达的酶体外研究了具有抗衰老活性的2-取代喹啉的代谢。

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Liver microsome and hepatocyte-mediated biotransformation of three oral antileishmanial 2-substituted quinolines were investigated. One quinoline contains an n-propyl group (1) and the other a propenyl chain functionalized at the gamma position either by a nitrile (2) or an alcohol (3). The different isoforms of rat cytochrome P450 responsible for biotransformation of 1 were also investigated. Compounds 2 and 3 mainly reacted with glutathione, preventing further metabolism. Compound 3 however, the reaction being reversible, could be released from glutathione and take alternative reaction pathways. Microsomal incubations of 1 mainly led to hydroxylation of the side chain, involving many cytochromes, predominantly CYP2B1, CYP2A6 and CYP1A1 (at more than 80%). In contrary, minor metabolites hydroxylated on the quinoline ring involved a few cytochromes. The hydroxylated products of 1 were conjugated with glucuronic acid in rat hepatocyte incubations.
机译:肝微粒体和肝细胞介导的三种口服抗衰老2-取代喹啉的生物转化进行了研究。一个喹啉含有一个正丙基(1),另一个丙烯基链在腈位置被腈(2)或醇(3)官能化。还研究了负责1的生物转化的大鼠细胞色素P450的不同同工型。化合物2和3主要与谷胱甘肽反应,阻止进一步的代谢。然而,化合物3的反应是可逆的,可以从谷胱甘肽中释放出来并采取其他反应途径。 1的微粒体温育主要导致侧链羟基化,涉及许多细胞色素,主要是CYP2B1,CYP2A6和CYP1A1(超过80%)。相反,在喹啉环上羟基化的次要代谢物涉及一些细胞色素。在大鼠肝细胞孵育中,将1的羟基化产物与葡萄糖醛酸偶联。

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