de Boer T, de Zeeuw R A, de Jong G J, Ensing K
Department of Analytical Chemistry and Toxicology, University Center for Pharmacy, Groningen, The Netherlands.
Electrophoresis. 2000 Sep;21(15):3220-39. doi: 10.1002/1522-2683(20000901)21:15<3220::AID-ELPS3220>3.0.CO;2-X.
A review is presented on the use of charged cyclodextrins (CDs) as chiral selectors in capillary electrophoresis (CE) for the separation of analytes in pharmaceutical analysis. An overview is given of theoretical models that have been developed for a better prediction of the enantiomeric resolution and for a better understanding of the separation mechanism. Several types of charged CDs have been used in chiral capillary electrophoretic separation (anionic, cationic, and amphoteric CDs). Especially the anionic CDs seem to be valuable due to the fact that many pharmaceutically interesting compounds can easily be protonated (e.g., amine groups). For that reason several anionic CDs are now commercially available. Cationic and amphoteric CDs are less common in chiral analysis and only a few are commercially available. Attention is paid to the most common synthesis routes and the characterization of the CDs used in chiral capillary electrophoretic separations. The degree of substitution in the synthesized CDs may vary from one manufacturer to another or even from batch to batch, which may have a detrimental effect on the reproducibility and ruggedness of the separation system. In Sections 4, 5, and 6 the applications of anionic, cationic, and amphoteric CDs for the chiral separation in CE are described. Many interesting examples are shown and the influence of important parameters on the enantioselectivity is discussed.
本文综述了带电环糊精(CDs)在毛细管电泳(CE)中作为手性选择剂用于药物分析中分析物分离的应用。概述了已开发的理论模型,这些模型用于更好地预测对映体拆分度以及更好地理解分离机制。几种类型的带电环糊精已用于手性毛细管电泳分离(阴离子型、阳离子型和两性离子型环糊精)。特别是阴离子型环糊精似乎很有价值,因为许多具有药学意义的化合物很容易质子化(例如胺基)。因此,现在有几种阴离子型环糊精可商购。阳离子型和两性离子型环糊精在手性分析中不太常见,只有少数可商购。文中关注了手性毛细管电泳分离中使用的环糊精的最常见合成路线及其表征。合成的环糊精的取代度可能因制造商而异,甚至因批次而异,这可能对分离系统的重现性和耐用性产生不利影响。在第4、5和6节中,描述了阴离子型、阳离子型和两性离子型环糊精在毛细管电泳手性分离中的应用。展示了许多有趣的例子,并讨论了重要参数对对映选择性的影响。