Raso Stephen, Bell Suzanne
Department of Chemistry, West Virginia University, Morgantown, WV 26506, USA.
Department of Forensic & Investigative Science, West Virginia University, Morgantown, WV 26506, USA.
J Anal Toxicol. 2017 Jul 1;41(6):551-558. doi: 10.1093/jat/bkx039.
Synthetic cannabinoids have become a ubiquitous challenge in forensic toxicology and seized drug analysis. Thermal degradation products have yet to be identified and evaluated for toxicity in comparison to parent and metabolic compounds. An investigation into these pyrolytic products, as the major route of ingestion is inhalation, may produce additional insight to understand the toxicity of synthetic cannabinoids. The pyrolysis of JWH-018 and 11 additional synthetic cannabinoids and six herbal plant substrates were conducted using an in-house constructed smoking simulator. After pyrolysis of herbal material alone, the plant substrate was spiked with the drug compounds to 2-5% w/w concentrations. Samples were collected, filtered, evaporated under nitrogen gas, reconstituted in methanol, and analyzed via gas chromatograph-mass spectrometer. Pyrolysis of the plant material alone produced 10 consistently observed compounds between the six plant species. The pyrolysis of the synthetic cannabinoids produced a total of 52 pyrolytic compounds, where 32 were unique to a particular parent compound and the remaining 20 were common products between multiple cannabinoids. The thermal degradation followed three major pathways that are outlined to assist in producing a predictive model for new synthetic cannabinoids that may arise in case samples. The observed pyrolytic products are also viable options for analysis in post mortem samples and the evaluation of toxicity.
合成大麻素已成为法医毒理学和缉获毒品分析中普遍存在的挑战。与母体化合物和代谢化合物相比,热降解产物尚未得到鉴定和毒性评估。由于摄入的主要途径是吸入,对这些热解产物的研究可能会为理解合成大麻素的毒性提供更多见解。使用自制的吸烟模拟器对JWH-018和另外11种合成大麻素以及六种草本植物基质进行热解。仅对草本材料进行热解后,将植物基质与药物化合物混合至2-5%(w/w)的浓度。收集样品,过滤,在氮气下蒸发,用甲醇复溶,并通过气相色谱-质谱仪进行分析。仅植物材料的热解在六种植物中产生了10种始终观察到的化合物。合成大麻素的热解共产生了52种热解化合物,其中32种是特定母体化合物特有的,其余20种是多种大麻素的共同产物。热降解遵循三个主要途径,这些途径被概述以帮助为案件样本中可能出现的新合成大麻素建立预测模型。观察到的热解产物也是死后样本分析和毒性评估的可行选择。