Weiß Jennifer A, Kadkhodaei Kian, Schmid Martin G
Department of Pharmaceutical Chemistry, Institute of Pharmaceutical Sciences, University of Graz, Universitaetsplatz 1, A-8010 Graz, Austria.
Sci Justice. 2017 Jan;57(1):6-12. doi: 10.1016/j.scijus.2016.08.007. Epub 2016 Sep 2.
Amphetamine and its derivatives gained high popularity on the illegal drug market. In the last few years, a lot of new psychoactive compounds structurally related to amphetamine, such as 4-fluoroamphetamine and 4-fluoromethamphetamine swamped the drug market. They were designed to circumvent prohibition of amphetamine and N-methylamphetamine and are distributed via the Internet. Often, a halogen atom is introduced into the phenyl ring of amphetamine to turn the illegal amphetamine legal. Since amphetamines possess a chiral centre, two enantiomers are available, which might differ in activity. Since most of them are partially not commercially available to date, synthesis and characterisation of amphetamine derivatives might help authorities to identify these substances of abuse. The aim of this study was to investigate self-synthesized amphetamines concerning their identity and their enantiomeric status either by GC-MS or by HPLC. For GC-MS, derivatization with (R)-(+)-α-methoxy-α-trifluoromethylphenylacetic acid (MTPA) or (1R)-(-)-menthylchloroformate prior to analysis on a HP-5MS column was done. For chiral separation by HPLC a LiChrospher 100 RP-18e column and sulfated beta-cyclodextrin added to the mobile phase as chiral selector were used. Enantioseparation was accomplished successfully by both methods. Furthermore, simultaneous chiral separation of three positions isomers, namely 2-fluoroamphetamine, 3-fluoroamphetamine and 4-fluoroamphetamine, was shown successfully by HPLC.
苯丙胺及其衍生物在非法毒品市场上非常流行。在过去几年中,许多与苯丙胺结构相关的新型精神活性化合物,如4-氟苯丙胺和4-氟甲基苯丙胺充斥着毒品市场。它们被设计用于规避对苯丙胺和N-甲基苯丙胺的禁令,并通过互联网进行分销。通常,在苯丙胺的苯环上引入一个卤原子,以使非法的苯丙胺合法化。由于苯丙胺具有一个手性中心,有两种对映体,它们的活性可能不同。由于迄今为止大多数对映体部分无法通过商业途径获得,苯丙胺衍生物的合成和表征可能有助于当局识别这些滥用物质。本研究的目的是通过气相色谱-质谱联用(GC-MS)或高效液相色谱(HPLC)来研究自行合成的苯丙胺的身份及其对映体状态。对于GC-MS,在HP-5MS柱上进行分析之前,先用(R)-(+)-α-甲氧基-α-三氟甲基苯基乙酸(MTPA)或(1R)-(-)-氯甲酸薄荷酯进行衍生化。对于HPLC手性分离,使用LiChrospher 100 RP-18e柱,并在流动相中加入硫酸化β-环糊精作为手性选择剂。两种方法均成功实现了对映体分离。此外,HPLC成功地同时实现了三种位置异构体,即2-氟苯丙胺、3-氟苯丙胺和4-氟苯丙胺的手性分离。