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抗焦虑药物丁螺环酮在人体中的代谢。

Metabolism of the antianxiety drug buspirone in human subjects.

作者信息

Jajoo H K, Mayol R F, LaBudde J A, Blair I A

机构信息

Department of Chemistry, Vanderbilt University School of Medicine, Nashville, TN.

出版信息

Drug Metab Dispos. 1989 Nov-Dec;17(6):634-40.

PMID:2575499
Abstract

The metabolism of an oral dose (20 mg) of the antianxiety drug buspirone labeled with 14C/15N was studied in human subjects. 15N was incorporated in the molecule to facilitate structural characterization of the metabolites by mass spectrometry. Urine samples were collected at intervals up to 24 hr and analyzed for radioactivity. Cumulative urinary excretion accounted for 50% of the dose in 24 hr. The urine was hydrolyzed with beta-glucuronidase/arylsulfatase and the deconjugated metabolites were isolated and purified by HPLC. The purified metabolites were identified by GC/MS, 1H-NMR, and comparison with authentic standards when available. Seven metabolites of buspirone were identified unambiguously, together with unchanged drug. Hydroxylation alpha to the glutarimidyl carbonyl at the 6'-position on the spiro ring system, hydroxylation at the 5-position on the pyrimidine ring, and N-dealkylation of the butyl-substituted side chain were major routes of metabolism. The identified metabolites accounted for 88% of the total radioactivity in the urine. A scheme for metabolism of buspirone in human subjects has been proposed.

摘要

在人体受试者中研究了口服剂量(20毫克)的用14C/15N标记的抗焦虑药物丁螺环酮的代谢情况。15N被掺入分子中,以便通过质谱对代谢产物进行结构表征。每隔一定时间收集尿液样本直至24小时,并分析其中的放射性。24小时内累积尿排泄量占给药剂量的50%。尿液用β-葡萄糖醛酸酶/芳基硫酸酯酶水解,通过高效液相色谱法分离和纯化去结合的代谢产物。通过气相色谱/质谱联用仪、1H-核磁共振以及与可用的标准品比较来鉴定纯化后的代谢产物。明确鉴定出了丁螺环酮的七种代谢产物以及未变化的药物。螺环系统上6'-位的戊二酰亚胺羰基α位羟基化、嘧啶环上5-位羟基化以及丁基取代侧链的N-脱烷基化是主要代谢途径。所鉴定出的代谢产物占尿液中总放射性的88%。已提出了丁螺环酮在人体受试者中的代谢示意图。

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