Cytochrome P-455 nm complex formation in the metabolism of phenylalkylamines. XIII. Enzyme interactions with a series of beta-alkyl-substituted 2-phenylethanamines and corresponding N-hydroxylamines.

Acta pharmaceutica Nordica Pub Date : 1992-01-01
K H Jönsson, M Stefek, B Lindeke
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Abstract

The formation of Metabolic Intermediate (MI) complexes from a series of beta-alkylsubstituted 2-phenylethanamines and corresponding N-hydroxylamines is investigated during NADPH-dependent metabolism in liver microsomes from phenobarbital pretreated rats. The beta-alkyl substituents are methyl, dimethyl, ethyl, di-ethyl, n-propyl, di-n-propyl and i-propyl groups. The amines are synthesized by LiAlH4-reduction of the corresponding nitriles, which are prepared through alkylation of the enolate anion of phenylacetonitrile. The hydroxylamines are prepared either by oxidation of the corresponding benzylimines with m-chloroperbenzoic acid and subsequent hydrolysis of the initially formed 3-phenyloxaziridines, or by H2O2-mediated oxidation of the corresponding amines in the presence of catalytic amounts of sodium tungstate, followed by reduction with cyanoborohydride. The amines are found to be completely devoid of complexing activity, while the hydroxylamines form the MI complex at high rates. Complex formation from these substrates thus parallels the known behaviour of 2-phenylethanamine and its corresponding N-hydroxylamine. Since N-oxygenation is known to be a prerequisite for MI complex formation from amines our results suggest that the beta-alkylated 2-phenylethanamines are metabolized exclusively through other pathways. In accordance with this hypothesis, capillary GC-analysis of the incubation mixture of 2-phenylpropanamine shows no formation of N-hydroxylated metabolites; only 2-phenylpropanol, a metabolite formed through the deamination pathway, is found.

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细胞色素p - 455nm复合物在苯烷基胺代谢中的形成。十三。酶与一系列-烷基取代的2-苯基乙胺和相应的n -羟胺的相互作用。
研究了苯巴比妥预处理大鼠肝微粒体nadph依赖性代谢过程中一系列β -烷基取代的2-苯乙胺和相应的n -羟胺形成代谢中间体(MI)复合物的过程。-烷基取代基是甲基、二甲基、乙基、二乙基、正丙基、二正丙基和一丙基。该胺是由苯乙腈的烯醇阴离子烷基化而成的相应腈经lialh4还原合成的。制备羟胺的方法有两种,一种是用间氯过苯甲酸氧化相应的苄胺,然后水解最初形成的3-苯氧基氧嘧啶,另一种是在催化量的钨酸钠存在下,用h2o2介导相应胺的氧化,然后用三硼氢化物还原。发现胺完全缺乏络合活性,而羟胺则以高速率形成MI络合物。因此,从这些底物形成的复合物与已知的2-苯基乙胺及其相应的n -羟胺的行为相似。由于已知n -氧合是胺形成MI复合物的先决条件,我们的结果表明-烷基化2-苯基乙胺只通过其他途径代谢。根据这一假设,毛细管气相色谱分析显示,2-苯基丙胺孵育混合物没有形成n -羟基化代谢物;只有通过脱氨途径形成的代谢物2-苯基丙醇被发现。
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