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Use of SPME-HS-GC–MS for the Analysis of Herbal Products Containing Synthetic Cannabinoids

机译:SPME-HS-GC-MS用于分析含有合成大麻素的草药产品

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摘要

The increasing prevalence and use of herbal mixtures containing synthetic cannabinoids presents a growing public health concern and legal challenge for society. In contrast to the plant-derived cannabinoids in medical marijuana and other cannabinoid-based therapeutics, the commonly encountered synthetic cannabinoids in these mendaciously labeled products constitute a structurally diverse set of compounds of relatively unknown pharmacology and toxicology. Indeed, the use of these substances has been associated with an alarming number of hospitalizations and emergency room visits. Moreover, there are already several hundred known cannabinoid agonist compounds that could potentially be used for illicit purposes, posing an additional challenge for public health professionals and law enforcement efforts, which often require the detection and identification of the active ingredients for effective treatment or prosecution. A solid-phase microextraction headspace gas chromatography–mass spectrometry method is shown here to allow for rapid and reliable detection and structural identification of many of the synthetic cannabinoid compounds that are currently or could potentially be used in herbal smoking mixtures. This approach provides accelerated analysis and results that distinguish between structural analogs within several classes of cannabinoid compounds, including positional isomers. The analytical results confirm the continued manufacture and distribution of herbal materials with synthetic cannabinoids and provide insight into the manipulation of these products to avoid legal constraints and prosecution.
机译:含有合成大麻素的草药混合物的普及和使用日益增加,这引起了公众日益关注的公共卫生问题以及社会面临的法律挑战。与医用大麻和其他以大麻素为基础的治疗剂中的植物性大麻素相比,在这些经过人工标记的产品中,常见的合成大麻素构成了结构相对不同的一组药理学和毒理学相对未知的化合物。的确,这些物质的使用与令人震惊的住院和急诊就诊次数有关。此外,已经有数百种已知的大麻素激动剂化合物可能用于非法目的,这给公共卫生专业人员和执法工作带来了额外的挑战,而执法工作往往需要检测和鉴定有效成分以进行有效治疗或起诉。此处显示的是一种固相微萃取顶空气相色谱-质谱法,可以快速,可靠地检测和鉴定目前或可能用于草药吸烟混合物中的许多合成大麻素化合物。这种方法提供了加速的分析和结果,可区分几类大麻素化合物(包括位置异构体)中的结构类似物。分析结果证实了具有合成大麻素的草药材料的持续生产和分销,并为深入了解这些产品的使用提供了见识,从而避免了法律上的限制和起诉。

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