Mellors J S, Gorbounov V, Ramsey R S, Ramsey J M
Department of Chemistry, University of North Carolina at Chapel Hill, Chapman Hall, Room 251, Chapel Hill, North Carolina 27599-3216, USA.
Anal Chem. 2008 Sep 15;80(18):6881-7. doi: 10.1021/ac800428w. Epub 2008 Aug 13.
A microfabricated device has been developed in which electrospray ionization is performed directly from the corner of a rectangular glass microchip. The device allows highly efficient electrokinetically driven separations to be coupled directly to a mass spectrometer (MS) without the use of external pressure sources or the insertion of capillary spray tips. An electrokinetic-based hydraulic pump is integrated on the chip that directs eluting materials to the monolithically integrated spray tip. A positively charged surface coating, PolyE-323, is used to prevent surface interactions with peptides and proteins and to reverse the electroosmotic flow in the separation channel. The device has been used to perform microchip CE-MS analysis of peptides and proteins with efficiencies over 200,000 theoretical plates (1,000,000 plates/m). The sensitivity and stability of the microfabricated ESI source were found to be comparable to that of commercial pulled fused-silica capillary nanospray sources.
一种微制造装置已被开发出来,其中电喷雾电离直接在矩形玻璃微芯片的角落进行。该装置允许高效的电动驱动分离直接与质谱仪(MS)耦合,而无需使用外部压力源或插入毛细管喷雾尖端。基于电动的液压泵集成在芯片上,将洗脱材料导向整体集成的喷雾尖端。带正电荷的表面涂层PolyE-323用于防止与肽和蛋白质的表面相互作用,并使分离通道中的电渗流反向。该装置已用于对肽和蛋白质进行微芯片CE-MS分析,效率超过200,000理论塔板(1,000,000塔板/米)。发现微制造的电喷雾电离源的灵敏度和稳定性与商业拉制的熔融石英毛细管纳米喷雾源相当。