首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Metabolic aromatization of N-alkyl-1,2,3,4-tetrahydroquinoline substructures to quinolinium by human liver microsomes and horseradish peroxidase.
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Metabolic aromatization of N-alkyl-1,2,3,4-tetrahydroquinoline substructures to quinolinium by human liver microsomes and horseradish peroxidase.

机译:N-烷基-1,2,3,4-四氢喹啉亚结构的代谢芳构化被人肝微粒体和辣根过氧化物酶氧化为喹啉。

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摘要

Metabolic aromatization of xenobiotics is an unusual reaction with some documented examples. For instance, the oxidation of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine to the neurotoxic pyridinium ion metabolite 1-methyl-4-phenylpyridinium by monoamine oxidase (MAO) B in the brain has been of interest to a number of investigators. It has also been reported that although the aromatization of N-methyl-tetrahydroisoquinoline occurs with MAO B, the metabolism does not proceed for its isomer, N-methyl-tetrahydroquinoline, by the same enzyme. The aromatization of an N-alkyl-tetrahydroquinoline substructure was identified during in vitro metabolite profiling of compound A, which was designed as a potent renin inhibitor for the treatment of hypertension. The N-alkylquinolinium metabolite of compound A was identified by liquid chromatography-tandem mass spectrometry of human liver microsomal incubates and proton NMR of the isolated metabolite. Further in vitro metabolism studies with a commercially available chemical (compound B), containing the same substructure, also generated an N-alkylquinolinium metabolite. In vitro cytochrome P450 (P450) reaction phenotyping of compound A revealed that the metabolism was catalyzed exclusively by CYP3A4. Although compound B was a substrate for several P450 isoforms, its quinolinium metabolite was also generated predominantly by CYP3A4. Neither compound A nor compound B was a substrate of MAOs. The quinolinium metabolites were readily produced by horseradish peroxidase, suggesting that aromatization of the N-alkyltetrahydroquinoline could occur via a mechanism involving single electron transfer from nitrogen. Although dihydro intermediates from the tetrahydroquinoline substrates were not observed in the formation of quinolinium metabolites, cyanide trapping results indicated the occurrence of iminium intermediates.
机译:异种生物的代谢芳构化是一些文献记载的异常反应。例如,大脑中的单胺氧化酶(MAO)B将1-甲基-4-苯基-1,2,3,6-四氢吡啶氧化为神经毒性吡啶鎓离子代谢物1-甲基-4-苯基吡啶鎓已引起人们的关注。给一些调查员。还已经报道,尽管N-甲基-四氢异喹啉通过MAO B发生芳构化,但是其异构体N-甲基-四氢喹啉不能通过相同的酶进行代谢。在化合物A的体外代谢产物分析过程中,鉴定了N-烷基-四氢喹啉亚结构的芳构化,该化合物被设计为治疗高血压的有效肾素抑制剂。通过人肝微粒体温育的液相色谱-串联质谱法和分离出的代谢物的质子NMR,鉴定了化合物A的N-烷基喹啉鎓代谢物。使用含有相同亚结构的市售化学药品(化合物B)进行的进一步体外代谢研究也产生了N-烷基喹啉鎓代谢物。化合物A的体外细胞色素P450(P450)反应表型显示,代谢仅由CYP3A4催化。尽管化合物B是几种P450亚型的底物,但其喹啉鎓代谢物也主要由CYP3A4产生。化合物A和化合物B都不是MAO的底物。辣根过氧化物酶很容易产生喹啉鎓代谢物,这表明N-烷基四氢喹啉的芳构化可以通过涉及从氮单电子转移的机理发生。尽管在喹啉鎓代谢物的形成过程中未观察到来自四氢喹啉底物的二氢中间体,但氰化物的捕获结果表明存在亚硝基中间体。

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