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法医电化学:“合法兴奋剂”产品中合成卡西酮衍生物及其伴随的掺杂物的电分析传感。

Forensic electrochemistry: the electroanalytical sensing of synthetic cathinone-derivatives and their accompanying adulterants in "legal high" products.

机构信息

Faculty of Science and Engineering, School of Chemistry and the Environment, Division of Chemistry and Environmental Science, Manchester Metropolitan University, Chester Street, Manchester M1 5GD, Lancs, UK.

出版信息

Analyst. 2014 Jan 21;139(2):389-400. doi: 10.1039/c3an01985c.

Abstract

The production and abuse of new psychoactive substances, known as "legal highs" which mimic traditional drugs of abuse is becoming a global epidemic. Traditional analytical methodologies exist which can provide confirmatory analysis but there is a requirement for an on-the-spot analytical screening tool that could be used to determine whether a substance, or sample matrix contains such legal, or formally "legal highs". In this paper the electrochemical sensing of (±)-methcathinone and related compounds at a range of commercially available electrode substrates is explored. We demonstrate for the first time that this class of "legal highs" are electrochemically active providing a novel sensing protocol based upon their electrochemical oxidation. Screen-printed graphite sensing platforms are favoured due to their proven ability to be mass-produced providing large numbers of reliable and reproducible electrode sensing platforms that preclude the requirement of surface pre-treatment such as mechanical polishing as is the case in the use of solid/re-usable electrode substrates. Additionally they hold potential to be used on-site potentially being the basis of an on-site legal high screening device. Consequently the electroanalytical sensing of (±)-methcathinone (3a), (±)-4′-methylmethcathinone [3b, 4-MMC, (±)-mephedrone] and (±)-4′-methyl-N-ethylcathinone (3c, 4-MEC) is explored using screen-printed sensing platforms with the effect of pH explored upon the analytical response with their analytical efficiency evaluated towards the target legal highs. Interesting at pH values below 6 the voltammetric response quantitatively changes from that of an electrochemically irreversible response to that of a quasi-reversible signature which can be used analytically. It is demonstrated for the first time that the electroanalytical sensing of (±)-methcathinone (3a), (±)-mephedrone (3b) and 4-MEC (3c) are possible with accessible linear ranges found to correspond to 16–200 μg mL(−1) for 3a (at pH 12) and 16–350 μg mL(−1) for both 3b and 3c in pH 2, with limits of detection (3σ) found to correspond to 44.5, 39.8 and 84.2 μg mL(−1) respectively. Additionally adulterants that are commonly incorporated into cathinone legal highs are electrochemically explored at both pH 2 and 12.

摘要

新精神活性物质(被称为“合法兴奋剂”)的生产和滥用正在成为一种全球性的流行趋势,这些物质模仿传统的滥用药物。目前已经存在可以提供确认性分析的传统分析方法,但需要一种现场分析筛选工具,用于确定物质或样品基质是否含有此类合法的或正式的“合法兴奋剂”。本文探索了一系列市售电极基底上(±)-甲卡西酮和相关化合物的电化学传感。我们首次证明,这类“合法兴奋剂”具有电化学活性,提供了一种基于其电化学氧化的新型传感方案。由于其大规模生产的可靠和可重复的电极传感平台的能力,丝网印刷石墨传感平台受到青睐,避免了表面预处理的要求,例如在使用固体/可重复使用的电极基底的情况下进行机械抛光。此外,它们还有可能在现场使用,有可能成为现场合法兴奋剂筛选设备的基础。因此,(±)-甲卡西酮(3a)、(±)-4′-甲基甲卡西酮[3b,4-MMC,(±)-麦角酸二乙酰胺]和(±)-4′-甲基-N-乙基甲卡西酮(3c,4-MEC)的电化学传感在丝网印刷传感平台上进行了探索,研究了 pH 值对分析响应的影响,并评估了它们对目标合法兴奋剂的分析效率。有趣的是,在 pH 值低于 6 的情况下,伏安响应从电化学不可逆响应定量变为准可逆特征,可用于分析。首次证明(±)-甲卡西酮(3a)、(±)-麦角酸二乙酰胺(3b)和 4-MEC(3c)的电化学传感是可能的,在 pH 值为 12 时,3a 的线性范围为 16-200μg mL(-1),在 pH 值为 2 时,3b 和 3c 的线性范围为 16-350μg mL(-1),检测限(3σ)分别对应于 44.5、39.8 和 84.2μg mL(-1)。此外,在 pH 值为 2 和 12 时,电化学探索了常见于卡酮合法兴奋剂中的掺杂物。

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