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万古霉素作为手性选择剂用于在毛细管液相色谱中对选定的丙酸类非甾体抗炎药进行对映体选择性分离。

Vancomycin as chiral selector for enantioselective separation of selected profen nonsteroidal anti-inflammatory drugs in capillary liquid chromatography.

作者信息

Kafková Bozena, Bosáková Zuzana, Tesarová Eva, Coufal Pavel, Messina Antonella, Sinibaldi Massimo

机构信息

Department of Analytical Chemistry, Faculty of Science, Charles University, Czech Republic.

出版信息

Chirality. 2006 Aug;18(7):531-8. doi: 10.1002/chir.20284.

Abstract

The chiral selector vancomycin was used either as mobile phase additive or bound as a chiral stationary phase (CSP) for the stereoselective separation of seven racemic nonsteroidal anti-inflammatory drugs (NSAIDs), fenoprofen, carprofen, flurbiprofen, indoprofen, flobufen, ketoprofen, and suprofen, by capillary liquid chromatography. The effect of the type of stationary phase, the chiral column Chirobiotic V or the achiral stationary phases Nucleosil 100 C8 HD and Nucleosil 100 C18 HD, and the concentration of vancomycin in the mobile phase on separation of the drug enantiomers were evaluated. All the drugs, except flobufen, were successfully enantioseparated on Nucleosil 100 C8 HD with 4 mM vancomycin present in the mobile phase (composed of methanol and buffer) in the reversed phase mode. On the vancomycin-bonded chiral stationary phase, it was difficult to get enantioseparations of the profen NSAIDs. However, flobufen gave better enantioseparation on the vancomycin CSP. The better enantioresolution of the majority of profen derivatives on the achiral columns with vancomycin added to the mobile phase can be attributed in particular to the higher separation efficiency of this capillary chromatographic system. In addition, vancomycin dimers, formed in the mobile phase, seem to offer a better steric arrangement for stereoselective interaction to these analytes than the vancomycin bonded on the CSP. These substantial differences in the CS structure significantly influence the chiral discrimination mechanism.

摘要

手性选择剂万古霉素用作流动相添加剂或作为手性固定相(CSP)结合,通过毛细管液相色谱法对7种外消旋非甾体抗炎药(NSAIDs)进行立体选择性分离,这些药物为非诺洛芬、卡洛芬、氟比洛芬、吲哚洛芬、氟洛芬、酮洛芬和舒洛芬。评估了固定相类型(手性柱Chirobiotic V或非手性固定相Nucleosil 100 C8 HD和Nucleosil 100 C18 HD)以及流动相中万古霉素浓度对药物对映体分离的影响。除氟洛芬外,所有药物在反相模式下于流动相(由甲醇和缓冲液组成)中存在4 mM万古霉素的情况下,均在Nucleosil 100 C8 HD上成功实现了对映体分离。在万古霉素键合的手性固定相上,很难实现丙酸类NSAIDs的对映体分离。然而,氟洛芬在万古霉素CSP上实现了更好的对映体分离。大多数丙酸类衍生物在手性柱上且流动相中添加万古霉素时能获得更好的对映体拆分效果,这尤其可归因于该毛细管色谱系统具有更高的分离效率。此外,流动相中形成的万古霉素二聚体似乎比键合在CSP上的万古霉素为这些分析物提供了更好的空间排列以进行立体选择性相互作用。CS结构中的这些显著差异显著影响了手性识别机制。

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