Kusý Petr, Klepárník Karel, Aturki Zeineb, Fanali Salvatore, Foret Frantisek
Department of Bioanalytical Instrumentation, Institute of Analytical Chemistry, Academy of Sciences of the Czech Republic, Brno, Czech Republic.
Electrophoresis. 2007 Jun;28(12):1964-9. doi: 10.1002/elps.200600640.
A pressurized liquid junction nanoelectrospray interface was designed and optimized for reliable on-line CE-MS coupling. The system was constructed as an integrated device for highly sensitive and selective analyses of proteins and peptides with the separation and spray capillaries fixed in a pressurized spray liquid reservoir equipped with the electrode for connection of the electrospray potential. The electrode chamber on the injection side of the separation capillary and the spray liquid reservoir were pneumatically connected by a Teflon tube filled with pressurized nitrogen. This arrangement provided precisely counterbalanced pressures at the inlet and outlet of the separation capillary. The pressure control system was driven by an electrically operated valve and maintained the optimum flow rate for the electrospray stability. All parts of the interface being in contact with the CEBGE, spray liquid and/or sample were made of glass or Teflon. The use of these materials minimized the electrospray chemical noise often caused by plastic softeners or material degradation. During optimization, the transfer of the separated zones between the separation and electrospray capillaries was monitored by UV absorbance and contactless conductivity detectors placed at the outlet of the separation capillary and inlet of the electrospray tip, respectively. This arrangement allowed independent monitoring of the effects of pressure, CE voltage and geometry of the liquid junction on the spreading and dilution of the separated zones after passage through the interface.
设计并优化了一种加压液体连接纳米电喷雾接口,以实现可靠的在线毛细管电泳-质谱联用。该系统构建为一种集成装置,用于对蛋白质和肽进行高灵敏度和高选择性分析,分离毛细管和喷雾毛细管固定在一个装有用于连接电喷雾电势的电极的加压喷雾液体储存器中。分离毛细管进样侧的电极室和喷雾液体储存器通过一根充满加压氮气的聚四氟乙烯管进行气动连接。这种布置在分离毛细管的入口和出口提供了精确平衡的压力。压力控制系统由一个电动阀驱动,并维持电喷雾稳定性的最佳流速。接口中与毛细管电泳缓冲液、喷雾液体和/或样品接触的所有部件均由玻璃或聚四氟乙烯制成。使用这些材料可将通常由塑料软化剂或材料降解引起的电喷雾化学噪声降至最低。在优化过程中,分别通过置于分离毛细管出口和电喷雾尖端入口处的紫外吸收检测器和非接触式电导检测器监测分离区在分离毛细管和电喷雾毛细管之间的转移情况。这种布置允许独立监测压力、毛细管电泳电压和液体连接几何形状对分离区通过接口后展宽和稀释的影响。