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电化学分类苯二氮䓬类药物:结合伏安法和液相色谱-质谱法的综合方法。

Electrochemical classification of benzodiazepines: A comprehensive approach combining insights from voltammetry and liquid chromatography - mass spectrometry.

机构信息

A-Sense Lab, Department of Bioscience Engineering, University of Antwerp, Groenenborgerlaan 171, 2020, Antwerp, Belgium; NANOlab Center of Excellence, University of Antwerp, Groenenborgerlaan 171, 2020, Antwerp, Belgium.

Drugs and Toxicology Department, National Institute for Criminalistics and Criminology (NICC), Vilvoordsesteenweg 100, 1120, Brussels, Belgium.

出版信息

Talanta. 2024 Nov 1;279:126623. doi: 10.1016/j.talanta.2024.126623. Epub 2024 Jul 26.

Abstract

The growing non-medical use of benzodiazepines (BZs) has led to the emergence of counterfeit BZ pills and new psycho-active substances (NPS) in the BZ class on the illicit market. Comprehensive analytical methods for BZ identification are required to allow law enforcement, first aid responders and drug-checking services to analyze a variety of sample types and contents to make timely decisions on the spot. In this work, the electrochemical behavior of diazepam (DZ), clonazepam (CZ) and alprazolam (AP) is studied on graphite screen-printed electrodes, both with and without dissolved oxygen in the solution, to link their redox signals to their chemical structure. After elucidation of their reduction mechanisms using liquid chromatography coupled to high-resolution mass spectrometry, three structural classes (Class 1, Class 2 and Class 3) were defined, each with different redox centers and electrochemical behavior. Subsequently, 22 confiscated pills containing 14 different BZs were correctly assigned to these three structural classes, with the deoxygenated conditions displaying the highest class selectivity. Finally, the three classes were successfully detected after being spiked into five alcoholic beverages in the context of drug-facilitated sexual assault. For analysis in red wine, which complicated the analysis by interfering with Class 1, a dual test strategy in pH 2 and pH 7 was proposed for accurate detection. Its rapid measurements, broad scope and lack of interference from diluents or colors makes this method a promising approach for aiding various services in combating problematic BZ use.

摘要

苯二氮䓬类药物(BZs)的非医疗用途不断增加,导致非法市场上出现了假冒 BZ 药丸和新型精神活性物质(NPS)。为了使执法部门、急救人员和毒品检测服务机构能够对各种样本类型和内容进行分析,并在现场做出及时决策,需要综合的 BZ 鉴定分析方法。在这项工作中,研究了在有和没有溶液中溶解氧的情况下,二氮䓬(DZ)、氯硝西泮(CZ)和阿普唑仑(AP)在石墨丝网印刷电极上的电化学行为,将它们的氧化还原信号与其化学结构联系起来。在使用液相色谱-高分辨率质谱联用技术阐明其还原机制后,定义了三个结构类别(类别 1、类别 2 和类别 3),每个类别都有不同的氧化还原中心和电化学行为。随后,对 22 个缴获的含有 14 种不同 BZs 的药丸进行了正确分类,在脱氧条件下显示出最高的类别选择性。最后,在药物辅助性性侵犯的背景下,将这三个类别成功地掺入到五种酒精饮料中进行检测。对于红酒的分析,这通过干扰类别 1 使分析变得复杂,因此提出了在 pH 2 和 pH 7 下进行双重测试策略,以进行准确检测。该方法快速、广泛,并且不受稀释剂或颜色的干扰,有望为打击 BZ 滥用的各种服务提供帮助。

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