Friedrich Schiller University Jena, Department of Pharmaceutical Chemistry, Philosophenweg 14, 07743 Jena, Germany.
J Pharm Biomed Anal. 2011 Jun 25;55(4):688-701. doi: 10.1016/j.jpba.2010.11.018. Epub 2010 Nov 23.
Capillary electromigration techniques are often considered ideal methods for the analysis of chiral compounds due to the high resolution power and flexibility of the technique. Therefore, especially capillary electrophoresis using a chiral selector in the background electrolyte, also termed electrokinetic chromatography, has found widespread acceptance in analytical enantioseparations of drug compounds in pharmaceuticals and biological media. Moreover, mechanistic studies on analyte complexation by the chiral selectors have continuously been conducted in an effort to rationalize enantioseparation phenomena. These studies combined capillary electrophoresis with spectroscopic techniques such as nuclear magnetic resonance and/or molecular modeling. The present review focuses on recent examples of mechanistic aspects of capillary electromigration enantioseparations and summarizes recent applications of chiral pharmaceutical and biomedical analysis published between January 2009 and August 2010.
毛细管电泳技术由于其高分辨率和灵活性,通常被认为是分析手性化合物的理想方法。因此,特别是在背景电解质中使用手性选择剂的毛细管电泳,也称为电动色谱,已在药物和生物介质中药物化合物的分析对映体分离中得到广泛认可。此外,通过手性选择剂对分析物络合的机理研究也在不断进行,以合理地解释对映体分离现象。这些研究将毛细管电泳与核磁共振和/或分子建模等光谱技术相结合。本综述重点介绍了最近毛细管电泳手性迁移对映体分离的机理方面的实例,并总结了 2009 年 1 月至 2010 年 8 月期间发表的手性药物和生物医学分析的最新应用。