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Rapid Detection and Quantification of Novel Psychoactive Substances (NPS) Using Raman Spectroscopy and Surface-Enhanced Raman Scattering

机译:利用拉曼光谱和表面增强拉曼散射快速检测和定量新型精神活性物质(NPS)

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摘要

With more than a million seizures of illegal drugs reported annually across Europe, the variety of psychoactive compounds available is vast and ever-growing. The multitude of risks associated with these compounds are well-known and can be life threatening. Hence the need for the development of new analytical techniques and approaches that allow for the rapid, sensitive, and specific quantitative detection and discrimination of such illicit materials, ultimately with portability for field testing, is of paramount importance. The aim of this study was to demonstrate the application of Raman spectroscopy and surface-enhanced Raman scattering (SERS) combined with chemometrics approaches, as rapid and portable techniques for the quantitative detection and discrimination of a wide range of novel psychoactive substances (methcathinone and aminoindane derivatives), both in powder form and in solution. The Raman spectra of the psychoactive compounds provided clear separation and classification of the compounds based on their core chemical structures; viz. methcathinones, aminoindanes, diphenidines, and synthetic cannabinoids. The SERS results also displayed similar clustering patterns, with improved limits of detections down to ~2 mM (0.41 g L−1). As mephedrone is currently very popular for recreational use we performed multiplexed quantitative detection of mephedrone (4-methylmethcathinone), and its two major metabolites (nor-mephedrone and 4-methylephedrine), as tertiary mixtures in water and healthy human urine. These findings readily illustrate the potential application of SERS for simultaneous detection of multiple NPS as mixtures without the need for lengthy prior chromatographic separation or enrichment methods.
机译:在欧洲每年报告的超过一百万多百万次缉获的非法药物,可用的精神活性化合物是丰富而永远的生长。与这些化合物相关的众多风险是众所周知的,并且可以是危及生命。因此,需要开发新的分析技术和方法,允许快速,敏感和特异性的定量检测和鉴别这种非法材料,最终具有现场测试的可移植性,这是至关重要的。本研究的目的是证明拉曼光谱和表面增强拉曼散射(SERS)与化学计量方法相结合的应用,作为定量检测和辨别各种新型精神活性物质的快速和便携式技术(甲肝醌和氨基茚衍生物),含有粉末形式和溶液。精神活性化合物的拉曼光谱根据其核心化学结构提供了清晰的分离和分类化合物; viz。甲肝醌,氨基茚,二苯胺,合成大麻素。 SERS结果也显示出类似的聚类模式,并改善了检测限的限值至〜2 mm(0.41g L-1)。由于Mephedrone目前非常受娱乐使用,我们进行了多路复用的Mephedrone(4-甲基甲胺酮)的定量检测,以及其两种主要代谢物(NOR-MEPHEDRONE和4-甲磺胺),作为水和健康人类尿液中的三级混合物。这些发现容易地说明SERs的潜在应用,以便同时检测多个NPS作为混合物,而无需冗长的现有色谱分离或富集方法。

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