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大鼠体内依卡贝肽主要胆汁和尿液代谢产物的鉴定。

Identification of major biliary and urinary metabolites of ecabapide in rats.

作者信息

Nakaoka M, Tsumura M, Ichikawa E, Suzuki W, Hakusui H, Nakazawa T

机构信息

Drug Metabolism & Analytical Chemistry Research Laboratory, Daiichi Pharmaceutical Co. Ltd, Tokyo, Japan.

出版信息

Xenobiotica. 1996 Sep;26(9):983-94. doi: 10.3109/00498259609052500.

Abstract
  1. The structures of major biliary and urinary metabolites of ecabapide in rat were identified by comparison with authentic standards using lc-ms and 1H-nmr spectrometry. 2. A major metabolite was found in the bile obtained from rat after an oral dose of 14C-ecabapide and identified as the amidaldehyde derivative. In the urine, two polar metabolites were characterized as the phenolic sulphates. Further, two lipophilic metabolites were identified as alcohol derivatives, and two others as oxamic acids. 3. From these results, it was estimated that the first step in the metabolism of ecabapide in rat was oxidative N-dealkylation to produce the amidaldehyde. This amidaldehyde was further metabolized by two routes, one by reduction of the amidaldehyde into the corresponding alcohol followed by mono-demethylation and subsequent aromatic O-sulphation, the second by oxidation of the amidaldehyde into the oxamic acid followed by mono-demethylation and subsequent aromatic O-sulphation.
摘要
  1. 通过使用液相色谱 - 质谱联用仪(LC-MS)和氢核磁共振波谱仪(1H-NMR)与标准品进行比较,确定了依卡贝肽在大鼠体内主要的胆汁和尿液代谢产物的结构。2. 给大鼠口服14C标记的依卡贝肽后,在其胆汁中发现了一种主要代谢产物,经鉴定为酰胺醛衍生物。在尿液中,两种极性代谢产物被表征为酚硫酸盐。此外,两种亲脂性代谢产物被鉴定为醇衍生物,另外两种为草氨酸。3. 根据这些结果,估计依卡贝肽在大鼠体内代谢的第一步是氧化N-脱烷基化生成酰胺醛。这种酰胺醛通过两条途径进一步代谢,一条途径是将酰胺醛还原为相应的醇,然后进行单脱甲基化,随后进行芳香族O-硫酸化;另一条途径是将酰胺醛氧化为草氨酸,然后进行单脱甲基化,随后进行芳香族O-硫酸化。

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