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使用配备785纳米和1064纳米激光源的手持式拉曼光谱仪鉴定新型精神活性物质(NPS)。

Identification of new psychoactive substances (NPS) using handheld Raman spectroscopy employing both 785 and 1064nm laser sources.

作者信息

Guirguis Amira, Girotto Sarah, Berti Benedetta, Stair Jacqueline L

机构信息

School of Life and Medical Sciences, Department of Pharmacy, Pharmacology and Postgraduate Medicine, University of Hertfordshire, Hatfield, UK.

出版信息

Forensic Sci Int. 2017 Apr;273:113-123. doi: 10.1016/j.forsciint.2017.01.027. Epub 2017 Feb 4.

Abstract

The chemical identification of new psychoactive substances (NPS) in the field is challenging due not only to the plethora of substances available, but also as a result of the chemical complexity of products and the chemical similarity of NPS analogues. In this study, handheld Raman spectroscopy and the use of two excitation wavelengths, 785 and 1064nm, were evaluated for the identification of 60 NPS products. The products contained a range of NPS from classes including the aminoindanes, arylalkylamines, benzodiazepines, and piperidines & pyrrolidines. Identification was initially assessed using the instruments' in built algorithm (i.e., % HQI) and then further by visual inspection of the Raman spectra. Confirmatory analysis was preformed using gas chromatography mass spectrometry. For the 60 diverse products, an NPS was successfully identified via the algorithm in 11 products (18%) using the 785nm source and 29 products (48%) using the 1064nm source. Evaluation of the Raman spectra showed that increasing the excitation wavelength from 785 to 1064nm improved this 'first pass' identification primarily due to a significant reduction in fluorescence, which increased S/N of the characteristic peaks of the substance identified. True positive correlations between internet products and NPS signatures ranged from 57.0 to 91.3% HQI with typical RSDs<10%. Tablet formulations and branded products were particularly challenging as a result of low NPS concentration and high chemical complexity, respectively. This study demonstrates the advantage of using a 1064nm source with handheld Raman spectroscopy for improved 'first pass' NPS identification when minimal spectral processing is required, such as when working in field. Future investigations will focus on the use of mixture algorithms, effect of NPS concentration, and further improvement of spectral libraries.

摘要

在现场对新型精神活性物质(NPS)进行化学鉴定具有挑战性,这不仅是因为有大量的可用物质,还由于产品的化学复杂性以及NPS类似物的化学相似性。在本研究中,对手持拉曼光谱以及使用785和1064nm这两种激发波长来鉴定60种NPS产品进行了评估。这些产品包含一系列来自不同类别的NPS,包括氨基茚满、芳基烷基胺、苯二氮䓬类以及哌啶和吡咯烷类。最初使用仪器内置算法(即HQI百分比)进行鉴定评估,然后通过对拉曼光谱的目视检查进一步评估。使用气相色谱 - 质谱联用进行确证分析。对于这60种不同的产品,使用785nm光源时,通过算法在11种产品(18%)中成功鉴定出NPS,使用1064nm光源时在29种产品(48%)中成功鉴定出NPS。对拉曼光谱的评估表明,将激发波长从785nm增加到1064nm可改善这种“初筛”鉴定,这主要是由于荧光显著减少,从而增加了所鉴定物质特征峰的信噪比。网络产品与NPS特征之间的真阳性相关性范围为HQI的57.0%至91.3%,典型相对标准偏差<10%。片剂制剂和品牌产品分别由于NPS浓度低和化学复杂性高而特别具有挑战性。本研究证明了在需要最少光谱处理(例如在现场工作时)的情况下,使用1064nm光源的手持拉曼光谱进行NPS“初筛”鉴定的优势。未来的研究将集中在混合算法的使用、NPS浓度的影响以及光谱库的进一步改进上。

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