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Studies on the Human Metabolism and the Toxicologic Detection of the Cough Suppressant Dropropizine in Urine Using Gas Chromatography-Mass Spectrometry.

机译:气相色谱-质谱法研究尿液中人咳嗽抑制剂Dropropizine的人体代谢和毒理学检测。

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摘要

Studies are described on the metabolism and the toxicologic analysis of the nonopioid cough suppressant dropropizine [R,S-3-(4-phenyl-1-piperazinyl)1,2-propandiol, DRO] in human urine using gas chromatography-mass spectrometry (GC-MS). The metabolism studies showed that DRO was metabolized in humans mainly by hydroxylation of the aromatic ring, by N-dealkylation of the parent drug and of the hydroxyl-metabolite to the corresponding N-phenylpiperazines, and by degradation of the piperazine moiety. The authors' systematic toxicologic analysis (STA) procedure using full-scan GC-MS after acid hydrolysis, liquid-liquid extraction, and microwave-assisted acetylation allowed the unambiguous detection of DRO and its above-mentioned metabolites in human urine up to about 32 hours after intake of a single common therapeutic dose. The target analytes were found to be the parent compound DRO (earlier phase of excretion) and the hydroxylated metabolite para-hydroxy-DRO (later phase of excretion). Both allowed unambiguous detection of an intake of DRO and also differentiation from other phenylpiperazine derivatives.
机译:使用气相色谱-质谱法对人尿中非阿片类止咳剂dropropizine [R,S-3-(4-苯基-1-哌嗪基)1,2-丙二醇,DRO]的代谢和毒理学分析进行了研究( GC-MS)。代谢研究表明,DRO在人体中的代谢主要是通过芳香环的羟基化,母体药物和羟基代谢物的N-脱烷基化为相应的N-苯基哌嗪以及哌嗪部分的降解。作者在酸水解,液-液萃取和微波辅助乙酰化后使用全扫描GC-MS进行系统毒理学分析(STA)程序,从而可以明确检测人体尿液中DRO及其上述代谢物的最高含量约为32服用单一常用治疗剂量后数小时。发现目标分析物是母体化合物DRO(排泄早期)和羟基化代谢物对羟基-DRO(排泄后期)。两者都可以明确检测DRO的摄入量,也可以与其他苯基哌嗪衍生物区分开来。

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