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Mass Spectrometric Evaluation of Mephedrone In Vivo Human Metabolism: Identification of Phase I and Phase II Metabolites, Including a Novel Succinyl Conjugate

机译:mephedrone体内人体代谢的质谱评估:I期和II期代谢物的鉴定,包括新型琥珀酰基共轭物

摘要

In recent years, many new designer drugs have emerged, including the group of cathinone derivatives. One frequently occurring drug is mephedrone; although mephedrone was originally considered as a “legal high” product, it is currently banned in most Western countries. Despite the banning, abuse of the drug and seizures are continuously reported. Although the metabolism of mephedrone has been studied in rats or in vitro using human liver microsomes, to the best of our knowledge, no dedicated study with human volunteers has been performed for studying the in vivo metabolism of mephedrone in humans. Therefore, the aim of this study was to establish the actual human metabolism of mephedrone and to compare it with other models. For this purpose, urine samples of two healthy volunteers, who ingested 200 mg mephedrone orally, were taken before administration and 4 hours after substance intake. The discovery and identification of the phase I and phase II metabolites of mephedrone were based on ultra-high-performance liquid chromatography coupled to hybrid quadrupole time-of-flight mass spectrometry, operating in the so-called MSE mode. Six phase I metabolites and four phase II metabolites were identified, four of them not previously reported in the literature. The structure of four of the detected metabolites was confirmed by synthesis of the suggested compounds. Remarkably, a mephedrone metabolite conjugated with succinic acid has been identified and confirmed by synthesis. According to the reviewed literature, this is the first time that this type of conjugate is reported for human metabolism.
机译:近年来,出现了许多新的设计药物,包括卡西酮衍生物。一种经常出现的药物是甲氧麻黄酮。尽管甲氧麻黄酮最初被认为是“合法的高级产品”,但目前在大多数西方国家已被禁止使用。尽管有禁令,但仍不断报告滥用药物和癫痫发作。尽管已在大鼠或体外使用人肝微粒体研究了甲氧麻黄酮的代谢,但据我们所知,尚未进行人类志愿者的专门研究来研究甲氧麻黄酮在人体内的代谢。因此,本研究的目的是建立甲氧麻黄酮的实际人体代谢并将其与其他模型进行比较。为此,在给药前和药物摄入后4小时采集了两名口服200 mg甲氧麻黄酮的健康志愿者的尿液样本。甲氧麻黄酮的I和II期代谢物的发现和鉴定是基于超高效液相色谱和混合四极杆飞行时间质谱联用的,该方法以所谓的MSE模式运行。鉴定出六种I期代谢物和4种II期代谢物,其中四种以前没有文献报道。通过合成建议的化合物可以确定四种检测到的代谢物的结构。显着地,已经鉴定并通过合成确认了与琥珀酸缀合的甲氧麻黄酮代谢物。根据综述文献,这是首次报道这种类型的结合物用于人类代谢。

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