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首页> 外文期刊>Analytical and bioanalytical chemistry >Beta-keto amphetamines: Studies on the metabolism of the designer drug mephedrone and toxicological detection of mephedrone, butylone, and methylone in urine using gas chromatography - Mass spectrometry
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Beta-keto amphetamines: Studies on the metabolism of the designer drug mephedrone and toxicological detection of mephedrone, butylone, and methylone in urine using gas chromatography - Mass spectrometry

机译:β-酮苯丙胺:使用气相色谱-质谱法研究设计药物甲氧麻黄酮的代谢以及尿液中甲氧麻黄酮,丁酮和甲酮的毒理学检测

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摘要

In recent years, a new class of designer drugs has appeared on the drugs of abuse market in many countries, namely, the so-called beta-keto (bk) designer drugs such as mephedrone (bk-4-methylmethamphetamine), butylone (bk-MBDB), and methylone (bk-MDMA). The aim of the present study was to identify the metabolites of mephedrone in rat and human urine using GC-MS techniques and to include mephedrone, butylone, and methylone within the authors' systematic toxicological analysis (STA) procedure. Six phase I metabolites of mephedrone were detected in rat urine and seven in human urine suggesting the following metabolic steps: N-demethylation to the primary amine, reduction of the keto moiety to the respective alcohol, and oxidation of the tolyl moiety to the corresponding alcohols and carboxylic acid. The STA procedure allowed the detection of mephedrone, butylone, methylone, and their metabolites in urine of rats treated with doses corresponding to those reported for abuse of amphetamines. Besides macro-based data evaluation, an automated evaluation using the automated mass spectral deconvolution and identification system was performed. Mephedrone and butylone could be detected also in human urine samples submitted for drug testing. Assuming similar kinetics in humans, the described STA procedure should be suitable for proof of an intake of the bk-designer drugs in human urine.
机译:近年来,许多国家的滥用药物市场上出现了一类新型的名牌药物,即所谓的β-酮(bk)名牌药物,如甲氧麻黄酮(bk-4-methylmethamphetamine),丁酮(bk -MBDB)和甲酮(bk-MDMA)。本研究的目的是使用GC-MS技术鉴定大鼠和人尿中甲氧麻黄酮的代谢物,并将甲氧麻黄酮,丁酮和甲酮纳入作者的系统毒理学分析(STA)程序中。在大鼠尿液中检测到6种甲氧麻黄酮的I期代谢产物,在人尿液中检测到7种,表明以下代谢步骤:N-去甲基化成伯胺,酮基还原成相应的醇,以及甲苯基氧化成相应的醇和羧酸。 STA程序可以检测大鼠尿液中的甲氧麻黄酮,丁酮,甲酮及其代谢产物,所用剂量与所报告的安非他明滥用剂量相对应。除了基于宏的数据评估之外,还执行了使用自动质谱解卷积和识别系统的自动评估。提交药物测试的人尿液样品中也可以检测出甲氧麻黄酮和丁酮。假设人类具有相似的动力学,所描述的STA程序应适合证明人类尿液中bk-designer药物的摄入。

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