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手性分离作为娱乐药物的去甲伪麻黄碱衍生物通过 HPLC-UV 使用 CHIRALPAK® AS-H 柱作为固定相。

Chiral separation of cathinone derivatives used as recreational drugs by HPLC-UV using a CHIRALPAK® AS-H column as stationary phase.

机构信息

Department of Pharmaceutical Chemistry, Institute of Pharmaceutical Sciences, Karl-Franzens-University Graz, A-8010, Graz, Austria.

出版信息

Chirality. 2012 Jun;24(6):486-92. doi: 10.1002/chir.22048. Epub 2012 Apr 27.

Abstract

Cathinone derivatives gained high popularity on the recreational drugs market during the past 10 years. All these compounds are chiral, and the pharmacological potency of the enantiomers of these stimulants is supposed to differ. The goal of this research was to develop a reliable and easy-to-perform high-performance liquid chromatography ultraviolet method for the chiral separation of a set of 24 cathinone derivatives. A commercially available CHIRALPAK® AS-H column consisting of amylose tris [(S)-α-methylbenzylcarbamate] coated on 5-µm silica gel was found to be suitable to resolve a majority of the tested compounds. High-performance liquid chromatography measurements were performed in normal phase mode under isocratic conditions with a mobile phase consisting of hexane, isopropanol, and triethylamine at a flowrate of 1 ml/min. The ratio between hexane and isopropanol was optimized by means of three model substances. Under final conditions with a mobile phase of hexane, isopropanol, and triethylamine (97:3:0.1), 19 out of 24 compounds were successfully resolved into their enantiomers and detected at a wavelength of 254 nm. A correlation between the substituents of the nitrogen atom and the separation results are shown. Furthermore, enantiomer separation results of four cathinone derivatives were compared with the results of their amphetamine analogs.

摘要

在过去的 10 年中,卡西酮衍生物在娱乐性毒品市场上获得了很高的人气。所有这些化合物都是手性的,这些兴奋剂对映异构体的药理效力应该不同。本研究的目的是开发一种可靠且易于执行的高效液相色谱紫外法,用于分离一组 24 种卡西酮衍生物。发现市售的 CHIRALPAK® AS-H 柱由涂覆在 5-µm 硅胶上的直链淀粉三 [(S)-α-甲基苄基氨基甲酸酯]组成,适合分离大多数测试化合物。高效液相色谱测量在正相模式下以等度条件进行,流动相由己烷、异丙醇和三乙胺组成,流速为 1ml/min。通过三种模型物质优化了己烷和异丙醇之间的比例。在最终条件下,流动相为己烷、异丙醇和三乙胺(97:3:0.1),24 种化合物中的 19 种成功地分离成对映异构体,并在 254nm 处检测到。显示了氮原子取代基与分离结果之间的相关性。此外,还比较了四种卡西酮衍生物的对映体分离结果及其苯丙胺类似物的结果。

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