Institute of Forensic Research, Westerplatte 9, 31033, Krakow, Poland.
J Am Soc Mass Spectrom. 2018 Oct;29(10):1941-1950. doi: 10.1007/s13361-018-2008-9. Epub 2018 Jun 27.
Recently, dozens of new psychoactive substances have appeared on the European drug market every year. The most abundant group of these compounds is synthetic cannabinoids. In the first few years of the "legal highs" phenomenon, JWH (John W. Huffman) compounds were especially popular among drug users. However, the group of synthetic cannabinoids is constantly expanding, as new compounds are created by replacing known structural elements with different chemical groups. The problem with the identification of novel substances in forensic laboratories results from the structural similarity of the compounds and the rapid introduction of newer designer drugs on the black market. In this study, the fragmentation patterns of 29 new-type synthetic cannabinoids using electrospray ionization were investigated. The analysis was performed using quadrupole time-of-flight mass spectrometry. Based on measurements carried out under various conditions, the way of fragmentation of the tested compounds that were divided into groups due to their chemical structure was established. The study showed that the bond between the carbon atom of the carbonyl group and the ring or NH group attached to the ring was mainly cleaved. This mechanism was adequate for the fragmentation of first-generation synthetic cannabinoids. This paper presents characteristic ions formed by synthetic cannabinoids (i.e., ions originating from an indole/indazole ring and an adamanyl/naphthalene/quinoline ring) using electrospray ionization. Knowledge of these specific fragments can be used in forensic laboratories to determine the structure of novel compounds from the group of synthetic cannabinoids. Graphical Abstract ᅟ.
近年来,每年都有数十种新的精神活性物质出现在欧洲毒品市场上。这些化合物中最丰富的一组是合成大麻素。在“合法兴奋剂”现象的最初几年,JWH(约翰·W·哈夫曼)化合物在吸毒者中特别受欢迎。然而,合成大麻素的种类不断扩大,因为新的化合物是通过用不同的化学基团取代已知的结构元素而创造的。法医实验室中新物质的识别问题源于化合物的结构相似性以及黑市上新的更具设计性的毒品的快速引入。在这项研究中,使用电喷雾电离研究了 29 种新型合成大麻素的碎片模式。使用四极杆飞行时间质谱进行了分析。基于在各种条件下进行的测量,建立了根据其化学结构分组的测试化合物的断裂方式。研究表明,主要断裂羰基碳原子与环或连接到环上的 NH 基团之间的键。这种机制足以用于第一代合成大麻素的断裂。本文介绍了使用电喷雾电离形成的合成大麻素的特征离子(即源自吲哚/吲唑环和金刚烷基/萘基/喹啉环的离子)。这些特定片段的知识可用于法医实验室,以确定新型化合物在合成大麻素组中的结构。