Metabolism and toxicological analysis of synthetic cannabinoids in biological fluids and tissues.

Q1 Social Sciences
Forensic Science Review Pub Date : 2016-07-01
B C Presley, S M R Gurney, K S Scott, S L Kacinko, B K Logan
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引用次数: 0

Abstract

Synthetic cannabinoids, which began proliferating in the United States in 2009, have gone through numerous iterations of modification to their chemical structures. More recent generations of compounds have been associated with significant adverse outcomes following use, including cognitive and psychomotor impairment, seizures, psychosis, tissue injury and death. These effects increase the urgency for forensic and public health laboratories to develop methods for the detection and identification of novel substances, and apply these to the determination of their metabolism and disposition in biological samples. This comprehensive review describes the history of the appearance of the drugs in the United States, discusses the naming conventions emerging to designate new structures, and describes the most prominent new compounds linked to the adverse effects now associated with their use. We review in depth the metabolic pathways that have been elucidated for the major members of each of the prevalent synthetic cannabinoid drug subclasses, the enzyme systems responsible for their metabolism, and the use of in silico approaches to assist in predicting and identifying the metabolites of novel compounds and drug subclasses that will continue to appear. Finally, we review and critique analytical methods applied to the detection of the drugs and their metabolites, including immunoassay screening, and liquid chromatography mass spectrometry confirmatory techniques applied to urine, serum, whole blood, oral fluid, hair, and tissues.

生物体液和组织中合成大麻素的代谢和毒理学分析。
合成大麻素于2009年开始在美国大量使用,其化学结构经历了无数次的修改。最近几代化合物与使用后的严重不良后果有关,包括认知和精神运动障碍、癫痫发作、精神病、组织损伤和死亡。这些影响增加了法医和公共卫生实验室开发检测和鉴定新物质的方法的紧迫性,并将这些方法应用于确定其在生物样品中的代谢和处置。这篇全面的综述描述了这些药物在美国出现的历史,讨论了用于指定新结构的命名惯例,并描述了与现在使用这些药物相关的副作用有关的最突出的新化合物。我们深入回顾了已阐明的每种流行合成大麻素药物亚类的主要成员的代谢途径,负责其代谢的酶系统,以及使用计算机方法来帮助预测和识别将继续出现的新化合物和药物亚类的代谢物。最后,我们回顾和批判了用于检测药物及其代谢物的分析方法,包括免疫分析筛选和用于尿液、血清、全血、口服液、头发和组织的液相色谱-质谱验证技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Forensic Science Review
Forensic Science Review Social Sciences-Law
CiteScore
1.90
自引率
0.00%
发文量
5
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