Yang L, Lee C S, Hofstadler S A, Smith R D
Department of Chemistry, USDOE, Iowa State University, Ames 50011, USA.
Anal Chem. 1998 Dec 1;70(23):4945-50. doi: 10.1021/ac980223w.
A microdialysis junction, based on a microdialysis membrane connecting a separation capillary and a short, sharply tapered microelectrospray emitter capillary, is demonstrated for on-line combination of capillary isoelectric focusing (CIEF) with electrospray ionization mass spectrometry (ESI-MS). The microdialysis junction provides the necessary electrical connection across the dialysis membrane for defining the electric fields needed for the CIEF separation and the electrospray process. Additionally, postseparation acidification of focused protein zones eluted from the CIEF capillary is achieved using the microdialysis junction while separation efficiency and resolution is maintained. A microelectrospray emitter produces a stable electrospray of protein analytes without the need for a makeup liquid flow and eliminates any subsequent sample dilution and reduction in MS sensitivity. The microdialysis junction is advantageous over the coaxial liquid sheath interface as evidenced by the simplicity in operation procedures, the enhancement in detection sensitivity, and the linear correlation between protein migration time and isoelectric point in CIEF-ESI-MS.
一种基于微透析膜连接分离毛细管和短而尖锐锥形的微电喷雾发射器毛细管的微透析连接装置,被用于毛细管等电聚焦(CIEF)与电喷雾电离质谱(ESI-MS)的在线联用。该微透析连接装置在透析膜上提供了必要的电连接,以定义CIEF分离和电喷雾过程所需的电场。此外,使用微透析连接装置可实现从CIEF毛细管洗脱的聚焦蛋白质区带的分离后酸化,同时保持分离效率和分辨率。微电喷雾发射器可产生稳定的蛋白质分析物电喷雾,无需补充液流,消除了后续样品稀释和质谱灵敏度降低的问题。微透析连接装置在操作程序的简便性、检测灵敏度的提高以及CIEF-ESI-MS中蛋白质迁移时间与等电点之间的线性相关性方面,优于同轴液体鞘流接口。