Gfrörer P, Schewitz J, Pusecker K, Tseng L H, Albert K, Bayer E
University of Tübingen, Institute of Organic Chemistry, Germany.
Electrophoresis. 1999 Jan;20(1):3-8. doi: 10.1002/(SICI)1522-2683(19990101)20:1<3::AID-ELPS3>3.0.CO;2-U.
Coupling of gradient capillary electrochromatography (gradient CEC) and capillary zone electrophoresis (CZE) with nuclear magnetic resonance spectroscopy (NMR) was performed using a recently developed capillary NMR interface. This technique was applied for the analysis of pharmaceuticals and food. An analgesic was investigated using isocratic and gradient continuous-flow CEC-NMR. Comparison of the results demonstrated the superiority of gradient CEC over isocratic CEC. Aspartame and caffeine, both ingredients of soft beverages, were separated and analyzed by continuous flow CZE-NMR. The order of elution could be reversed by altering the pH. This reversal led to an increased sample concentration in the NMR detection cell, thus allowing the acquisition of a totally correlated spectroscopy (TOCSY) two-dimensional (2-D) spectrum of the synthetic peptide aspartame.
采用最近开发的毛细管核磁共振接口,将梯度毛细管电色谱(梯度CEC)和毛细管区带电泳(CZE)与核磁共振光谱(NMR)联用。该技术应用于药物和食品分析。使用等度和梯度连续流CEC-NMR对一种镇痛药进行了研究。结果比较表明,梯度CEC优于等度CEC。对软饮料中的两种成分阿斯巴甜和咖啡因进行了连续流CZE-NMR分离和分析。通过改变pH值可以使洗脱顺序颠倒。这种颠倒导致核磁共振检测池中样品浓度增加,从而可以采集合成肽阿斯巴甜的全相关光谱(TOCSY)二维(2-D)谱。