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新型精神活性物质的离子阱淌度质谱分析:取代环的苯丙胺类同系物的特征鉴定。

Trapped ion mobility mass spectrometry of new psychoactive substances: Isomer-specific identification of ring-substituted cathinones.

机构信息

Division of Bioanalytical Chemistry, Amsterdam Institute of Molecular and Life Sciences, Vrije Universiteit Amsterdam, De Boelelaan 1085, 1081 HV, Amsterdam, the Netherlands; Centre for Analytical Sciences Amsterdam (CASA), 1098 XH, Amsterdam, the Netherlands.

Centre for Analytical Sciences Amsterdam (CASA), 1098 XH, Amsterdam, the Netherlands; Forensic Laboratory, Unit Amsterdam, Dutch National Police, Kabelweg 25, 1014 BA, Amsterdam, the Netherlands; Van't Hoff Institute for Molecular Sciences, University of Amsterdam, P.O. Box 94157, 1090 GD, Amsterdam, the Netherlands.

出版信息

Anal Chim Acta. 2023 Jul 11;1264:341276. doi: 10.1016/j.aca.2023.341276. Epub 2023 Apr 26.

Abstract

New psychoactive substances (NPS) are synthetic derivatives of illicit drugs designed to mimic their psychoactive effects. NPS are typically not controlled under drug acts or their legal status depends on their molecular structure. Discriminating isomeric forms of NPS is therefore crucial for forensic laboratories. In this study, a trapped ion mobility spectrometry time-of-flight mass spectrometry (TIMS-TOFMS) approach was developed for the identification of ring-positional isomers of synthetic cathinones, a class of compounds representing two-third of all NPS seized in Europe in 2020. The optimized workflow features narrow ion-trapping regions, mobility calibration by internal reference, and a dedicated data-analysis tool, allowing for accurate relative ion-mobility assessment and high-confidence isomer identification. Ortho-, meta- and para-isomers of methylmethcathinone (MMC) and bicyclic ring isomers of methylone were assigned based on their specific ion mobilities within 5 min, including sample preparation and data analysis. The resolution of two distinct protomers per cathinone isomer added to the confidence in identification. The developed approach was successfully applied to the unambiguous assignment of MMC isomers in confiscated street samples. These findings demonstrate the potential of TIMS-TOFMS for forensic case work requiring fast and highly-confident assignment cathinone-drug isomers in confiscated samples.

摘要

新型精神活性物质 (NPS) 是设计用来模拟非法药物精神活性作用的合成衍生物。NPS 通常不受毒品法管制,其法律地位取决于其分子结构。因此,区分 NPS 的立体异构形式对于法医实验室至关重要。在这项研究中,开发了一种离子阱迁移谱飞行时间质谱 (TIMS-TOFMS) 方法,用于鉴定合成卡西酮的环状位置异构体,这是 2020 年在欧洲缉获的所有 NPS 中约三分之二的化合物类别。优化的工作流程具有狭窄的离子阱区域、内部参考的迁移率校准和专用数据分析工具,可实现准确的相对离子迁移率评估和高置信度的异构体鉴定。基于甲基甲卡西酮 (MMC) 的邻位、间位和对位异构体以及甲酮的双环环异构体在 5 分钟内根据其特定的离子迁移率进行了分配,包括样品制备和数据分析。每个卡西酮异构体的两种不同前手性的分辨率增加了鉴定的可信度。所开发的方法成功应用于在缴获的街头样本中明确分配 MMC 异构体。这些发现表明,TIMS-TOFMS 具有潜力,可用于法医学工作,需要快速且高度可信地分配在缴获的样品中卡西酮药物异构体。

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