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基于纳米材料平台的合成卡西酮的法医分析:化学计量学辅助伏安法和超高效液相色谱-串联质谱法研究

Forensic Analysis of Synthetic Cathinones on Nanomaterials-Based Platforms: Chemometric-Assisted Voltametric and UPLC-MS/MS Investigation.

作者信息

Dragan Ana-Maria, Feier Bogdan George, Tertiș Mihaela, Bodoki Ede, Truta Florina, Ștefan Maria-Georgia, Kiss Béla, Van Durme Filip, De Wael Karolien, Oprean Radu, Cristea Cecilia

机构信息

Department of Analytical Chemistry, Faculty of Pharmacy, 'Iuliu Hațieganu' University of Medicine and Pharmacy, Pasteur 6, 400349 Cluj-Napoca, Romania.

A-Sense Lab, University of Antwerp, Groenenborgerlaan 171, 2010 Antwerp, Belgium.

出版信息

Nanomaterials (Basel). 2023 Aug 22;13(17):2393. doi: 10.3390/nano13172393.

Abstract

Synthetic cathinones (SCs) are a group of new psychoactive substances often referred to as "legal highs" or "bath salts", being characterized by a dynamic change, new compounds continuously emerging on the market. This creates a lack of fast screening tests, making SCs a constant concern for law enforcement agencies. Herein, we present a fast and simple method for the detection of four SCs (alpha-pyrrolidinovalerophenone, -ethylhexedrone, 4-chloroethcathinone, and 3-chloromethcathinone) based on their electrochemical profiles in a decentralized manner. In this regard, the voltametric characterization of the SCs was performed by cyclic and square wave voltammetry. The elucidation of the SCs redox pathways was successfully achieved using liquid chromatography coupled to (tandem) mass spectrometry. For the rational identification of the ideal experimental conditions, chemometric data processing was employed, considering two critical qualitative and quantitative variables: the type of the electrochemical platform and the pH of the electrolyte. The analytical figures of merit were determined on standard working solutions using the optimized method, which exhibited wide linear ranges and LODs suitable for confiscated sample screening. Finally, the performance of the method was evaluated on real confiscated samples, the resulting validation parameters being similar to those obtained with another portable device (i.e., Raman spectrometer).

摘要

合成卡西酮(SCs)是一类新型精神活性物质,常被称为“合法兴奋剂”或“浴盐”,其特点是不断变化,市场上不断有新的化合物出现。这导致缺乏快速筛查测试,使合成卡西酮一直是执法机构关注的问题。在此,我们基于四种合成卡西酮(α-吡咯烷基戊酮、乙基己酮、4-氯乙卡西酮和3-氯甲卡西酮)的电化学特征,提出了一种快速简便的分散式检测方法。在这方面,通过循环伏安法和方波伏安法对合成卡西酮进行了伏安特性表征。使用液相色谱-(串联)质谱联用成功阐明了合成卡西酮的氧化还原途径。为合理确定理想的实验条件,采用了化学计量学数据处理方法,考虑了两个关键的定性和定量变量:电化学平台类型和电解质的pH值。使用优化方法在标准工作溶液上测定了分析性能指标,该方法具有宽线性范围和适用于没收样品筛查的检测限。最后,在实际没收样品上评估了该方法的性能,所得验证参数与另一便携式设备(即拉曼光谱仪)获得的参数相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/317a/10489959/703470fb7d71/nanomaterials-13-02393-g001.jpg

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