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克他命类似街头合成法导致形成已知和新型吗啡喃的扩大簇合物。

Street-Like Synthesis of Krokodil Results in the Formation of an Enlarged Cluster of Known and New Morphinans.

作者信息

Soares José Xavier, Alves Emanuele Amorim, Silva André M N, de Figueiredo Natália Guimarães, Neves João F, Cravo Sara Manuela, Rangel Maria, Netto Annibal Duarte Pereira, Carvalho Félix, Dinis-Oliveira Ricardo Jorge, Afonso Carlos Manuel

机构信息

LAQV, REQUIMTE, Department of Chemical Sciences, Laboratory of Applied Chemistry, Faculty of Pharmacy, University of Porto , José Viterbo Ferreira Street No. 228, 4050-313 Porto, Portugal.

UCIBIO, REQUIMTE, Laboratory of Toxicology, Department of Biological Sciences, Faculty of Pharmacy, University of Porto , José Viterbo Ferreira Street No. 228 4050-313 Porto, Portugal.

出版信息

Chem Res Toxicol. 2017 Aug 21;30(8):1609-1621. doi: 10.1021/acs.chemrestox.7b00126. Epub 2017 Aug 4.

Abstract

"Krokodil" is the street name for a homemade injectable drug that has been used as a cheap substitute for heroin. Codeine is the opioid starting material for krokodil synthesis, and desomorphine is claimed to be the main opioid of krokodil and the main component responsible for its addictive and psychoactive characteristics. However, due to its peculiar manufacture, using cheap raw materials, krokodil is composed of a large and complex mixture of different substances. In order to shed some light upon the chemical complexity of krokodil, its profiling was conducted by reverse phase high performance liquid chromatography coupled to a photodiode array detector (RP-HPLC-DAD) and by liquid chromatography coupled to high resolution tandem mass spectrometry (LC-ESI-IT-Orbitrap-MS). Besides desomorphine, codeine, and morphine, profiting from the high resolution mass spectrometry (HRMS) data, an endeavor to study the morphinans content in krokodil was set for the first time. Considering codeine as the only morphinan precursor and the possible chemical transformations that can occur during krokodil synthesis, the morphinan chemical space was designed, and 95 compounds were defined. By making use of the morphinan chemical space in krokodil, the exact masses featured by HRMS, and the morphinan mass fragmentations patterns, a targeted identification approach was designed and implemented.The proposed 95 morphinans were searched using the full scan chromatogram of krokodil, and findings were validated by mass fragmentation of the correspondent precursor ions (MS spectra). Following this effort, a total of 54 morphinans were detected, highlighting the fact that these additional morphinans may contribute to the psychotropic effects of krokodil.

摘要

“克罗科迪尔”是一种自制注射药物的街头名称,它被用作海洛因的廉价替代品。可待因是合成克罗科迪尔的阿片类起始原料,据宣称去甲吗啡是克罗科迪尔的主要阿片类物质,也是其成瘾性和精神活性特征的主要成分。然而,由于其制作工艺特殊,使用的是廉价原料,克罗科迪尔由大量不同物质的复杂混合物组成。为了揭示克罗科迪尔的化学复杂性,采用反相高效液相色谱 - 光电二极管阵列检测器联用技术(RP - HPLC - DAD)以及液相色谱 - 高分辨率串联质谱联用技术(LC - ESI - IT - Orbitrap - MS)对其进行了剖析。除了去甲吗啡、可待因和吗啡外,借助高分辨率质谱(HRMS)数据,首次尝试研究克罗科迪尔中的吗啡喃含量。将可待因视为唯一的吗啡喃前体,并考虑到克罗科迪尔合成过程中可能发生的化学转化,设计了吗啡喃化学空间,并确定了95种化合物。利用克罗科迪尔中的吗啡喃化学空间、HRMS的精确质量数以及吗啡喃的质量碎裂模式,设计并实施了一种靶向鉴定方法。使用克罗科迪尔的全扫描色谱图搜索提出的95种吗啡喃,并通过相应前体离子的质量碎裂(MS谱图)对结果进行验证。经过这项工作,共检测到54种吗啡喃,突出了这些额外的吗啡喃可能对克罗科迪尔的精神作用有贡献这一事实。

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