Lian Dong-Sheng, Zhao Shu-Jin, Li Jian, Li Bing-Ling
Department of Pharmacy, Guangzhou General Hospital of Guangzhou Military Command, Guangzhou, 510010, China.
Anal Bioanal Chem. 2014 Oct;406(25):6129-50. doi: 10.1007/s00216-014-8062-7. Epub 2014 Aug 9.
Numerous strategies have been developed to mitigate the intrinsic low detection sensitivity that is a limitation of capillary electrophoresis. Among them, in-line stacking is an effective strategy to address the sensitivity challenge, and among the different stacking techniques, stacking based on field amplification is the most effective and simplest method of achieving high sensitivity without special complicated mechanisms or operations. This review introduces several stacking techniques based on field amplification. Field-amplified sample stacking, large-volume sample stacking, matrix field-amplified stacking injection (FASI), head-column FASI, matrix FASI combined with head-column FASI, FASI coupled with extraction and clean-up methods, electrokinetic supercharging, cation-anion selective exhaustive injection-sweeping-micellar electrokinetic chromatography, and newly developed techniques based on field amplification combined with other methods are included, and examples of straightforward methods for solving the sensitivity problem are provided. We also present a brief overview of the advantages, limitations, and future developments of these techniques.
为缓解作为毛细管电泳局限性的固有低检测灵敏度,人们已开发出多种策略。其中,在线堆积是应对灵敏度挑战的有效策略,在不同的堆积技术中,基于场放大的堆积是实现高灵敏度最有效且最简单的方法,无需特殊复杂的机制或操作。本综述介绍了几种基于场放大的堆积技术。包括场放大样品堆积、大体积样品堆积、基质场放大堆积进样(FASI)、柱端FASI、基质FASI与柱端FASI联用、FASI与萃取和净化方法联用、电动增压、阳离子 - 阴离子选择性彻底进样 - 扫集 - 胶束电动色谱以及基于场放大与其他方法联用的新开发技术,并提供了解决灵敏度问题的直接方法示例。我们还简要概述了这些技术的优点、局限性和未来发展。