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Comprehensive Analysis of Emerging New Psychoactive Substances by Ion Mobility Spectrometry and Mass Spectrometry

机译:离子迁移谱和质谱法对新兴精神活性物质的综合分析

摘要

In the new era of drug abuse, the proliferation of new psychoactive substances (NPS), commonly referred to as designer drugs or legal highs, has been a global concern. These substances are produced to circumvent current legislation for controlled substances with minor modifications in their chemical structure. Although many efforts have been made previously, the characterization of such substances are still challenging because of (1) the continual emergence of newly identified substances, (2) the lack of a universal screening test for NPS that are structurally similar to each other, and (3) the complex and time-consuming chromatographic techniques currently used. Therefore, it is necessary to develop novel analytical methods that can be readily adapted by forensic laboratories to overcome these challenges.In this dissertation, various analytical techniques have been evaluated for qualitative analysis of these emerging NPS. For rapid screening purposes, a commercial ion mobility spectrometry with a 63Ni ion source (63Ni-IMS) and also direct analysis in real time coupled to a quadrupole time-of-flight mass spectrometer (DART-QTOF-MS) were investigated first. The results showed that rapid detection by 63Ni-IMS and identification by DART-QTOF-MS can be achieved with sub-nanogram detection capability and high speed total analysis time less than two minutes. In recent developments of gas chromatography mass spectrometry (GC-MS), gas chromatography (GC) has been coupled to state-of-the-art mass spectrometers, including triple quadrupole (MS/MS) and quadrupole time-of-flight (QTOF). It was revealed that the application of GC-MS/MS and GC-QTOF facilitates the unambiguous identification of emerging NPS with a chemical ionization (CI) source. In addition, constitutional isomers of NPS were differentiated with the capabilities of product ion scan and multiple reaction monitoring (MRM) modes. Finally, the coupling of IMS with a mass spectrometer (IMS-MS) was investigated as an alternative confirmatory technique. With the development of an optimal solvent system in the electrospray ionization (ESI) process, the rapid analysis and identification of synthetic cathinone was successfully achieved less than five minutes. As a proof-of-concept, seized drugs samples provided by a local forensic laboratory were analyzed using these developed methods by various analytical techniques. The results from these seized samples are also presented in this evaluation.
机译:在新的药物滥用时代,新的精神活性物质(NPS)的扩散,通常被称为名牌药物或合法药物,已成为全球关注的问题。生产这些物质是为了规避目前对其化学结构进行微小改动的受控物质的法规。尽管之前已经做出了很多努力,但是由于以下原因,这些物质的表征仍然具有挑战性:(1)不断出现新发现的物质;(2)缺乏针对结构相互相似的NPS的通用筛选测试;以及(3)目前使用的复杂且费时的色谱技术。因此,有必要开发新颖的分析方法,以方便法医实验室克服这些挑战。本论文对各种新兴的NPS进行了定性分析。为了快速筛选,首先研究了具有63Ni离子源(63Ni-IMS)的商业离子迁移谱仪,以及与四极杆飞行时间质谱仪(DART-QTOF-MS)耦合的实时直接分析。结果表明,亚纳米级检测能力和不到2分钟的高速总分析时间可实现63Ni-IMS快速检测和DART-QTOF-MS鉴定。在气相色谱质谱(GC-MS)的最新发展中,气相色谱(GC)已与包括三重四极杆(MS / MS)和四极杆飞行时间(QTOF)在内的最新质谱仪结合使用)。结果表明,GC-MS / MS和GC-QTOF的应用有助于通过化学电离(CI)源明确鉴定正在出现的NPS。此外,NPS的结构异构体还具有产物离子扫描和多反应监测(MRM)模式的功能。最后,研究了IMS与质谱仪(IMS-MS)的耦合作为另一种确认技术。随着电喷雾电离(ESI)过程中最佳溶剂系统的开发,合成Cathinone的快速分析和鉴定成功实现了不到五分钟的时间。作为概念验证,使用这些开发的方法通过各种分析技术对当地法医实验室提供的缉获毒品样品进行了分析。这些检获样品的结果也显示在此评估中。

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    Gwak Seongshin;

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  • 年度 2015
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