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在极性离子条件下使用基于纤维素的手性固定相对手性芬太尼进行原始对映体分离。

Original enantioseparation of illicit fentanyls with cellulose-based chiral stationary phases under polar-ionic conditions.

机构信息

Department of Pharmaceutical Sciences, University of Perugia, Via Fabretti 48, 06123 Perugia, Italy.

Department of Pharmacy and Biotechnology (FaBiT), Alma Mater Studiorum, University of Bologna, Via Belmeloro 6, 40126 Bologna.

出版信息

J Chromatogr A. 2021 Apr 26;1643:462088. doi: 10.1016/j.chroma.2021.462088. Epub 2021 Mar 22.

Abstract

Fentanyl analogues used in therapy and a range of highly potent non-pharmaceutical fentanyl derivatives are subject to international control, as the latter are increasingly being synthesized illicitly and sold as 'synthetic heroin', or mixed with heroin. A significant number of hospitalizations and deaths have been reported in the EU and USA following the use of illicitly synthesized fentanyl derivatives. It has been unequivocally demonstrated that the enantiomers of fentanyl derivatives exhibit different pharmaco-toxicological profiles, which makes crucial to avail of suitable analytical methods enabling investigations at a "stereochemical level". Chromatographic methods useful to discriminate the enantioseparation of fentanyls and their derivatives are still missing in the literature. This is the first study in which the enantioseparation of four fentanyl derivatives, that is, (±)-trans-3-methyl norfentanyl, (±)-cis-3-methyl norfentanyl, β-hydroxyfentanyl, and β-hydroxythiofentanyl, has been obtained under polar-ionic conditions. Indeed, the use of ACN-based mobile phases with minor amounts of either 2-propanol or ethanol (plus diethylamine and formic acid as ionic additives) allowed obtaining enantioseparation and enantioresolution factors up to 1.83 and 7.02, respectively. For the study, the two chiral stationary phases cellulose tris(3-chloro-4-methylphenylcarbamate) and cellulose tris(4-chloro-3-methylphenylcarbamate) were used, displaying a remarkably different performance towards the enantioseparation of (±)-cis-3-methyl norfentanyl. Chiral LC analyses with a high-resolution mass spectrometry detector were also carried out in order to confirm the obtained data and demonstrate the suitability and compatibility of the optimized mobile phases with mass spectrometric systems.

摘要

芬太尼类似物被用于治疗,并存在一系列高活性非药物类芬太尼衍生物,这些物质都受到国际管制,因为后者越来越多地被非法合成并作为“合成海洛因”或与海洛因混合出售。在欧盟和美国,大量与使用非法合成的芬太尼衍生物有关的住院和死亡报告。已经明确证明,芬太尼衍生物的对映异构体表现出不同的药物毒理学特征,这使得利用合适的分析方法在“立体化学水平”进行研究变得至关重要。在文献中仍然缺乏用于区分芬太尼及其衍生物的对映异构体分离的色谱方法。这是首次在极性离子条件下获得四种芬太尼衍生物,即(±)-反式-3-甲基去甲芬太尼、(±)-顺式-3-甲基去甲芬太尼、β-羟基芬太尼和β-羟硫代芬太尼的对映异构体分离的研究。实际上,使用含有少量 2-丙醇或乙醇的 ACN 基流动相(外加二乙胺和甲酸作为离子添加剂),可以获得高达 1.83 和 7.02 的对映体分离和对映体分辨率因子。在该研究中,使用了两种手性固定相纤维素三(3-氯-4-甲基苯基碳酸酯)和纤维素三(4-氯-3-甲基苯基碳酸酯),它们在手性分离(±)-顺式-3-甲基去甲芬太尼方面表现出明显不同的性能。还进行了具有高分辨率质谱检测器的手性 LC 分析,以确认获得的数据,并证明优化的流动相与质谱系统的适用性和兼容性。

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