Evaluation of spectroscopic techniques for on-site drug testing of festival seizures.

IF 2.6 3区 医学 Q2 BIOCHEMICAL RESEARCH METHODS
N Meert, J Eliaerts, F Van Durme, S M R Wille, N Samyn
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引用次数: 0

Abstract

Despite the fact that drugs of abuse are illegal, a drug-free festival still remains an utopia in most settings. For law enforcement purposes, it is necessary to rapidly determine whether controlled substances are involved. On-site testing is a challenging task because drugs appear in different physical forms and concentrations. The aim of this study was to compare the performance of two spectroscopic techniques, Raman and Fourier transform-infrared (FT-IR), for the testing of drug seizures at a dance festival. First, samples were measured through packaging with Raman. Subsequently, homogenized samples were analysed with FT-IR. For MDMA tablets, a chemometric model was applied on the FT-IR spectra for the dose estimation. After the festival, results were confirmed in the forensic laboratory with gas chromatography coupled with mass spectrometry (GC-MS) and gas chromatography with flame ionization detection (GC-FID). In total, 166 samples of which 90 tablets, 53 powders, 16 crystals and 7 liquids were analysed. MDMA, cocaine and ketamine were the top three drugs seized. The Raman technique was suitable for powders and crystals (sensitivity of 100% and 81%, respectively). However, in comparison with FT-IR, Raman performance was lower for the analysis of liquids (sensitivity of 67%) and 'ecstasy'-like tablets (sensitivity of 41%). Overall, sensitivities above 95% were obtained with FT-IR. The MDMA doses of the tablets, determined on-site, ranged between 52 mg and 336 mg MDMA hydrochloride. For a quick identification of a variety of drugs on-site, the combination of Raman and FT-IR is recommended. It should be emphasized that optimized settings, in-house libraries and analysis by trained operators are essential to obtain correct results.

评估用于对节日发作进行现场药物检测的光谱技术。
尽管滥用药物是非法的,但在大多数情况下,无毒品的节日仍然是一个乌托邦。出于执法目的,有必要迅速确定是否涉及受管制物质。现场检测是一项具有挑战性的任务,因为毒品的物理形态和浓度各不相同。本研究旨在比较拉曼和傅立叶变换红外光谱(FT-IR)这两种光谱技术在检测舞蹈节上查获的毒品时的性能。首先,使用拉曼光谱对包装样品进行测量。随后,使用傅立叶变换红外光谱对均质样品进行分析。对于亚甲二氧基甲基苯丙胺片剂,在傅立叶变换红外光谱上应用化学计量模型进行剂量估算。节后,法医实验室利用气相色谱-质谱联用仪(GC-MS)和气相色谱-火焰离子化检测仪(GC-FID)对结果进行了确认。总共分析了 166 个样本,其中 90 个片剂、53 个粉末、16 个晶体和 7 个液体。缉获最多的三种毒品是亚甲二氧基甲基苯丙胺、可卡因和氯胺酮。拉曼技术适用于粉末和晶体(灵敏度分别为 100%和 81%)。不过,与傅立叶变换红外光谱相比,拉曼技术在分析液体(灵敏度为 67%)和 "摇头丸 "类药片(灵敏度为 41%)方面的性能较低。总体而言,傅立叶变换红外光谱的灵敏度高于 95%。经现场测定,片剂中的摇头丸剂量在 52 毫克至 336 毫克盐酸摇头丸之间。为了现场快速鉴定各种药物,建议结合使用拉曼和傅立叶变换红外光谱。需要强调的是,要获得正确的结果,优化设置、内部资料库以及由训练有素的操作人员进行分析是必不可少的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Drug Testing and Analysis
Drug Testing and Analysis BIOCHEMICAL RESEARCH METHODS-CHEMISTRY, ANALYTICAL
CiteScore
5.90
自引率
24.10%
发文量
191
审稿时长
2.3 months
期刊介绍: As the incidence of drugs escalates in 21st century living, their detection and analysis have become increasingly important. Sport, the workplace, crime investigation, homeland security, the pharmaceutical industry and the environment are just some of the high profile arenas in which analytical testing has provided an important investigative tool for uncovering the presence of extraneous substances. In addition to the usual publishing fare of primary research articles, case reports and letters, Drug Testing and Analysis offers a unique combination of; ‘How to’ material such as ‘Tutorials’ and ‘Reviews’, Speculative pieces (‘Commentaries’ and ‘Perspectives'', providing a broader scientific and social context to the aspects of analytical testing), ‘Annual banned substance reviews’ (delivering a critical evaluation of the methods used in the characterization of established and newly outlawed compounds). Rather than focus on the application of a single technique, Drug Testing and Analysis employs a unique multidisciplinary approach to the field of controversial compound determination. Papers discussing chromatography, mass spectrometry, immunological approaches, 1D/2D gel electrophoresis, to name just a few select methods, are welcomed where their application is related to any of the six key topics listed below.
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