Department of Chemistry and Center for Nanotechnology at CYCU, Chung Yuan Christian University, 200 Chung Pei Road, Chung-Li, 320, Taiwan.
J Chromatogr A. 2011 Oct 21;1218(42):7663-9. doi: 10.1016/j.chroma.2011.05.091. Epub 2011 Jun 1.
This study describes for the first time, the ability of a normal stacking mode (NSM) on-line concentration step coupled with water-in-oil (W/O) microemulsion electrokinetic chromatography (MEEKC), using six common penicillin antibiotics (oxacillin, penicillin V, penicillin G, nafcillin, ampicillin, and amoxicillin) as test analytes. Optimization of penicillin separation in the conventional W/O MEEKC system demonstrated that change in the type and concentration of the oil phase (1-butanol) and column temperature had a pronounced effect on the separation. With the subsequent development of the NSM coupled with W/O MEEKC, improved separation and detection sensitivities were observed when an organic solvent plug (1-propanol; 1.04 cm) was placed between the W/O microemulsion and the sample solutions. This could be attributed to the solution viscosity difference between the aqueous sample zone and the organic solvent plug causing the penicillin to be stacked in this 1-propanol plug. The optimal NSM W/O MEEKC provided about 12-fold increase in detection sensitivity compared with conventional sample injection (50 mbar, 3 s). Finally, this proposed method was successfully applied in the analyses of several food samples (porcine organs) spiked with penicillin.
本研究首次描述了在水包油(W/O)微乳液电动色谱(MEEKC)中采用常规在线浓缩模式(NSM),使用六种常见的青霉素抗生素(苯唑西林、青霉素 V、青霉素 G、萘夫西林、氨苄西林和阿莫西林)作为测试分析物的能力。在常规 W/O MEEKC 系统中对青霉素分离的优化表明,油相(1-丁醇)的类型和浓度以及柱温的变化对分离有显著影响。随后,随着 NSM 与 W/O MEEKC 的发展,当在 W/O 微乳液和样品溶液之间放置有机溶剂塞(1-丙醇;1.04cm)时,观察到分离和检测灵敏度得到改善。这可能归因于水相样品区和有机溶剂塞之间的溶液粘度差异导致青霉素在 1-丙醇塞中堆积。与常规进样(50mbar,3s)相比,最佳的 NSM W/O MEEKC 提供了约 12 倍的检测灵敏度提高。最后,该方法成功应用于添加青霉素的几种食品样品(猪器官)的分析。