Cho Seung Il, Shim Jiyeon, Kim Min-Su, Kim Yong-Kweon, Chung Doo Soo
School of Electrical Engineering and Computer Science, Seoul National University, Seoul 151-744, South Korea.
J Chromatogr A. 2004 Nov 5;1055(1-2):241-5. doi: 10.1016/j.chroma.2004.08.124.
In chiral capillary electrophoresis of primary amine enantiomers using (+)-18-crown-6-tetracarboxylic acid (18C6H4) as a chiral selector, the presence of alkaline metal ions in the sample solution as well as in the run buffer is undesirable due to their strong competitive binding with 18C6H4. A channel-coupled microchip electrophoresis device was designed to clean up alkaline metal ions from a sample matrix for the chiral analysis of amine. In the first channel, the metal ions in the sample were monitored by indirect detection using quinine as a chromophore and drained to the waste. In the second separation channel, gemifloxacin enantiomers, free of the alkaline metal ions, were successfully separated using only a small amount of the chiral selector (50 microM 18C6H4).
在以(+)-18-冠-6-四羧酸(18C6H4)作为手性选择剂的伯胺对映体的手性毛细管电泳中,由于碱金属离子与18C6H4具有强烈的竞争性结合,样品溶液以及运行缓冲液中存在碱金属离子是不理想的。设计了一种通道耦合微芯片电泳装置,用于从样品基质中清除碱金属离子,以进行胺的手性分析。在第一个通道中,使用奎宁作为发色团通过间接检测监测样品中的金属离子,并将其排放到废物中。在第二个分离通道中,仅使用少量的手性选择剂(50 microM 18C6H4)成功分离了不含碱金属离子的吉米沙星对映体。