Wang F, Khaledi M G
Department of Chemistry, North Carolina State University, Raleigh 27695-8204, USA.
Electrophoresis. 1998 Sep;19(12):2095-100. doi: 10.1002/elps.1150191209.
Chiral separations of basic enantiomers were carried out by using a cationic cyclodextrin (CD), quaternary ammonium beta-cyclodextrin (QA-beta-CD), under counter-electroosmotic flow (counter-EOF) conditions. The special characteristics of using a cationic CD to separate cationic enantiomers is that the EOF can be reversed and the analyte-CD complexation is reduced. This is especially useful for chiral separation of cationic compounds, which strongly bind with neutral and anionic CDs (such as tricyclic amine compounds). The reduction in the binding constants between the CD and the cationic enantiomers makes it easier to control the optimum CD concentration. The application of the cationic CD also eliminated the peak tailing problem caused by electrodispersion. The effect of pH and the concentration of QA-betaCD on chiral separation has been studied. At pH 3.02, no separation for any of the enantiomeric amines was observed. At pH 8.20, chiral separation of some tricyclic compounds was achieved at very high resolution due to the counter-EOF setup. At pH 11.6, most enantiomers were neutral and chiral separation of some bicyclic compounds can be obtained.
在反向电渗流(counter-EOF)条件下,使用阳离子环糊精(CD),即季铵化β-环糊精(QA-β-CD)对碱性对映体进行手性分离。使用阳离子CD分离阳离子对映体的特殊之处在于电渗流可以反转,且分析物与CD的络合作用减弱。这对于阳离子化合物的手性分离尤为有用,因为阳离子化合物会与中性和阴离子CD(如三环胺化合物)强烈结合。CD与阳离子对映体之间结合常数的降低使得更容易控制最佳CD浓度。阳离子CD的应用还消除了电分散引起的峰拖尾问题。研究了pH值和QA-β-CD浓度对手性分离的影响。在pH 3.02时,未观察到任何对映体胺的分离。在pH 8.20时,由于反向电渗流设置,一些三环化合物实现了非常高分辨率的手性分离。在pH 11.6时,大多数对映体呈中性,可以实现一些双环化合物的手性分离。