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Sequential Metabolism of Secondary Alkyl Amines to Metabolic-Intermediate Complexes: Opposing Roles for the Secondary Hydroxylamine and Primary Amine Metabolites of Desipramine (S)-Fluoxetine and N-Desmethyldiltiazem

机译:二级烷基胺向代谢中间体复合物的顺序代谢:地西拉明(S)-氟西汀和N-去甲基地尔硫ze的二级羟胺和一级胺代谢物的相反作用

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摘要

Three secondary amines desipramine (DES), (S)-fluoxetine [(S)-FLX], and N-desmethyldiltiazem (MA) undergo N-hydroxylation to the corresponding secondary hydroxylamines [N-hydroxydesipramine, (S)-N-hydroxyfluoxetine, and N-hydroxy-N-desmethyldiltiazem] by cytochromes P450 2C11, 2C19, and 3A4, respectively. The expected primary amine products, N-desmethyldesipramine, (S)-norfluoxetine, and N,N-didesmethyldiltiazem, are also observed. The formation of metabolic-intermediate (MI) complexes from these substrates and metabolites was examined. In each example, the initial rates of MI complex accumulation followed the order secondary hydroxylamine > secondary amine ≫ primary amine, suggesting that the primary amine metabolites do not contribute to formation of MI complexes from these secondary amines. Furthermore, the primary amine metabolites, which accumulate in incubations of the secondary amines, inhibit MI complex formation. Mass balance studies provided estimates of the product ratios of N-dealkylation to N-hydroxylation. The ratios were 2.9 (DES-CYP2C11), 3.6 [(S)-FLX-CYP2C19], and 0.8 (MA-CYP3A4), indicating that secondary hydroxylamines are significant metabolites of the P450-mediated metabolism of secondary alkyl amines. Parallel studies with N-methyl-d3-desipramine and CYP2C11 demonstrated significant isotopically sensitive switching from N-demethylation to N-hydroxylation. These findings demonstrate that the major pathway to MI complex formation from these secondary amines arises from N-hydroxylation rather than N-dealkylation and that the primary amines are significant competitive inhibitors of MI complex formation.
机译:三个仲胺desipramine(DES),(S)-氟西汀[(S)-FLX]和N-desmethyldiltiazem(MA)经过N-羟基化反应生成相应的仲羟胺[N-hydroxydesipramine,(S)-N-hydroxyfluoxetine,和N-羟基-N-去甲基地尔硫卓]分别由细胞色素P450 2C11、2C19和3A4组成。还观察到了预期的伯胺产物,N-去甲基去甲胺,(S)-去氟西汀和N,N-去甲基去甲西ze。检查了由这些底物和代谢产物形成的代谢中间体(MI)复合物。在每个实例中,MI复合物积累的初始速率遵循仲羟胺>仲胺≫伯胺的顺序,这表明伯胺代谢物无助于这些仲胺形成MI复合物。此外,在仲胺的培养中积累的伯胺代谢物抑制MI复合物的形成。质量平衡研究提供了对N-脱烷基化与N-羟基化的产物比率的估计。比率为2.9(DES-CYP2C11),3.6 [(S)-FLX-CYP2C19]和0.8(MA-CYP3A4),表明仲羟胺是P450介导的仲烷基胺代谢的重要代谢产物。用N-甲基-d3-去甲胺和CYP2C11进行的平行研究表明,从 N -去甲基化到 N -羟基化反应具有显着的同位素敏感性转换。这些发现表明,这些仲胺形成MI复合物的主要途径是 N -羟基化而不是 N -脱烷基化,并且伯胺是MI的重要竞争性抑制剂。复杂的形成。

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