Foret F, Zhou H, Gangl E, Karger B L
Barnett Institute and Department of Chemistry, Northeastern University, Boston, MA 02115, USA.
Electrophoresis. 2000 Apr;21(7):1363-71. doi: 10.1002/(SICI)1522-2683(20000401)21:7<1363::AID-ELPS1363>3.0.CO;2-U.
A modular subatmospheric electrospray interface with fiber optic UV detection close to the electrospray tip was developed for coupling of microcolumn separation techniques with mass spectrometry. The interface was based on a liquid junction with a removable microelectrospray tip. The electrospray tip was enclosed in a subatmospheric chamber attached in front of the sampling orifice of the mass spectrometer. The inlet of the liquid junction was maintained at atmospheric pressure, and thus no pressure drop developed across the separation column. The flow rate of the electrosprayed liquid from the liquid junction reservoir was adjusted by the pressure in the electrospray chamber. In this approach, a continuous and stable electrospray could be achieved without the use of an external pump. Since the electrospray did not depend on fluid delivery from the separation column, coated capillaries without electroosmotic flow as well as capillaries with electroosmotic flow could be used for capillary electrophoresis. In addition, the interface was found to be effective with capillary liquid chromatography. The use of a fiber optic UV detector placed close to the exit of the separation column provided additional detection information and a simple means of troubleshooting. The interface did not significantly influence the quality of the separation, even with columns generating several hundred thousand theoretical plates. Peptide samples in the submicromolar concentration range were detected, corresponding to a limit of detection in the attomole range.
开发了一种模块化的低于大气压的电喷雾接口,其在靠近电喷雾尖端处设有光纤紫外检测装置,用于将微柱分离技术与质谱联用。该接口基于带有可移除微电喷雾尖端的液接界。电喷雾尖端封闭在连接于质谱仪采样孔前方的低于大气压的腔室内。液接界的入口保持在大气压下,因此在分离柱上不会产生压降。来自液接界储液器的电喷雾液体的流速通过电喷雾腔室内的压力进行调节。通过这种方法,无需使用外部泵即可实现连续稳定的电喷雾。由于电喷雾不依赖于来自分离柱的流体输送,因此无电渗流的涂层毛细管以及有 电渗流的毛细管均可用于毛细管电泳。此外,发现该接口对毛细管液相色谱也有效。使用靠近分离柱出口放置的光纤紫外检测器可提供额外的检测信息及一种简单的故障排查方法。即使对于能产生几十万理论塔板数的色谱柱,该接口也不会显著影响分离质量。检测到了亚微摩尔浓度范围内的肽样品,对应的检测限在阿托摩尔范围内。