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[毛细管电色谱和加压毛细管电色谱的最新进展与应用]

[Recent advances and applications of capillary electrochromatography and pressurized capillary electrochromatography].

作者信息

Wu Yi, Zhang Xiaohui, Wei Juan, Xue Yunyun, Bahatibieke Marjan, Wang Yan, Yan Chao

机构信息

School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Se Pu. 2009 Sep;27(5):609-20.

Abstract

Capillary electrochromatography (CEC), in which electroosmotic flow (EOF) created from the electrical double layer is made to act as a pump to drive the mobile phase in a capillary column packed with micro-particulates or coated with stationary phase. Both neutral and charged species can be resolved by CEC. It has been demonstrated that the efficiency of a separation obtained by electroosmotic propulsion is superior to that obtained by pressure-driven flow (as is the case in HPLC). CEC combines the best features of CE and versatile selectivity and large sample capacity of HPLC, promising high efficiency, high resolution, high selectivity and high peak capacity. However, in practice, when CEC is used without pressure, often used on a commercial CE instrument, there are problems and difficulties associated with bubbles formation and column dry-out. These difficulties can be overcome by a pressurized CEC (pCEC) system, in which a supplementary pressure is applied to the column in addition to the EOF. In such a system, a pressure can be applied to the capillary column to suppress bubbles formation. Quantitative sample introduction in pCEC can be easily achieved through a rotary-type injector. Most importantly, it is amenable for a solvent gradient mode, similar to that in HPLC, by programming the composition of mobile phase. The article brings a comprehensive survey of recent development of CEC and pCEC, including the development of instrumentation, capillary columns and stationary phase as well as CEC and pCEC applications in life science, biotechnology, pharmaceutical analysis, food safety and environmental security. Prospects for CEC and pCEC development and application are also discussed.

摘要

毛细管电色谱(CEC)利用双电层产生的电渗流(EOF)作为泵,驱动填充有微粒或涂覆有固定相的毛细管柱中的流动相。中性和带电物质都可以通过CEC进行分离。已经证明,通过电渗推进获得的分离效率优于通过压力驱动流动获得的分离效率(高效液相色谱法(HPLC)就是这种情况)。CEC结合了CE的最佳特性以及HPLC的通用选择性和大进样量,有望实现高效、高分辨率、高选择性和高峰容量。然而,在实际应用中,当在商业CE仪器上通常无压力使用CEC时,会出现与气泡形成和柱干涸相关的问题和困难。这些困难可以通过加压CEC(pCEC)系统克服,在该系统中,除了EOF之外,还向柱施加辅助压力。在这样的系统中,可以向毛细管柱施加压力以抑制气泡形成。通过旋转式进样器可以轻松实现pCEC中的定量进样。最重要的是,通过对流动相组成进行编程,它适用于类似于HPLC的溶剂梯度模式。本文全面综述了CEC和pCEC的最新发展,包括仪器、毛细管柱和固定相的发展以及CEC和pCEC在生命科学、生物技术、药物分析、食品安全和环境安全方面的应用。还讨论了CEC和pCEC的发展和应用前景。

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