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使用石墨烯丝网印刷电极对甲麻黄碱进行电化学检测:法医分析中鉴定合成卡西酮的一种新型灵敏且选择性的方法。

Electrochemical detection of mephedrone using a graphene screen-printed electrode: a new sensitive and selective approach to identify synthetic cathinones in forensic analysis.

作者信息

Melo Larissa M A, Arantes Luciano C, Schaffel Izabela F, Aranha Lívia M S, Conceição Nathália S, Lima Camila D, Marinho Pablo A, Ferreira Rafael Q, Dos Santos Wallans T P

机构信息

Departamento de Química, Universidade Federal dos Vales do Jequitinhonha e Mucuri, Campus JK, 39100000, Diamantina, Minas Gerais, Brazil.

Laboratório de Química e Física Forense, Instituto de Criminalística, Polícia Civil do Distrito Federal, 70610-907, Brasília, Distrito Federal, Brazil.

出版信息

Analyst. 2023 Mar 27;148(7):1552-1561. doi: 10.1039/d3an00065f.

Abstract

Mephedrone (MEP) is an illicit stimulant drug that belongs to the synthetic cathinone (SC) class, which has been widely used for recreational purposes and reported in forensic analysis. The preliminary identification of MEP and other SCs in seized samples is of great interest for forensic investigation and a fast and simple screening test for these drugs would be useful for on-site and in-house analyses. In this study, we present the electrochemical detection of MEP in forensic samples using, for the first time, independent redox processes of SCs on a graphene screen-printed electrode (SPE-GP). The proposed method for MEP detection on the SPE-GP was optimized in Britton-Robinson buffer solution (0.1 mol L) at pH 10.0 with adsorptive stripping differential pulse voltammetry (AdSDPV). The use of the SPE-GP with AdSDPV provides a wide linear range for MEP determination (2.6 to 112 μmol L) with a low limit of detection (LOD) (0.3 μmol L). The real surface area available for adsorption on the SPE-GP was estimated to be between 3.80 and 5.70 cm, which provided high sensitivity for the proposed method. Furthermore, good stability of MEP electrochemical responses on the SPE-GP was obtained using the same or different electrodes ( = 3), with relative standard deviation (RSD) < 5.0% for both redox processes. Interference studies for a common adulterant (caffeine) and twelve other illicit drugs (phenethylamines, amphetamines, and other SCs) were performed with a highly selective response for MEP detection. Therefore, the SPE-GP with AdSDPV is demonstrated to be a selective and sensitive screening method to detect MEP and other SCs in forensic analysis, providing a fast and simple preliminary identification of these drugs in seized samples.

摘要

甲麻黄碱(MEP)是一种非法的兴奋剂药物,属于合成卡西酮(SC)类,已被广泛用于娱乐目的,并在法医分析中有所报道。在查获的样本中对MEP和其他SCs进行初步鉴定对法医调查非常重要,一种快速简单的这些药物筛选测试将有助于现场和内部分析。在本研究中,我们首次展示了在石墨烯丝网印刷电极(SPE-GP)上利用SCs的独立氧化还原过程对法医样本中的MEP进行电化学检测。在pH值为10.0的Britton-Robinson缓冲溶液(0.1 mol/L)中,采用吸附溶出微分脉冲伏安法(AdSDPV)对SPE-GP上检测MEP的方法进行了优化。使用带有AdSDPV的SPE-GP为MEP的测定提供了较宽的线性范围(2.6至112 μmol/L),检测限较低(0.3 μmol/L)。估计可用于在SPE-GP上吸附的实际表面积在3.80至5.70平方厘米之间,这为所提出的方法提供了高灵敏度。此外,使用相同或不同的电极(n = 3)在SPE-GP上获得了MEP电化学响应的良好稳定性,两个氧化还原过程的相对标准偏差(RSD)均<5.0%。对一种常见掺假物(咖啡因)和其他十二种非法药物(苯乙胺、苯丙胺和其他SCs)进行了干扰研究,对MEP检测具有高度选择性响应。因此,带有AdSDPV的SPE-GP被证明是一种用于法医分析中检测MEP和其他SCs的选择性和灵敏的筛选方法,可为查获样本中的这些药物提供快速简单的初步鉴定。

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