Wang Ying-Chih, Choi Man Ho, Han Jongyoon
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Anal Chem. 2004 Aug 1;76(15):4426-31. doi: 10.1021/ac0497499.
Methods are described to achieve more efficient multidimensional protein separation in a microfluidic channel. The new methods couple isoelectric focusing (IEF) with high ionic strength electrophoretic separations by active microvalve control in a microchip. Several experiments demonstrating independent 2D separation were performed, and critical parameters for optimal chip performance were identified, including channel passivation, electroosmosis control, and IEF linearity control. This strategy can be used for integration of different heterogeneous separation techniques, such as IEF, capillary electrophoresis, and liquid chromatography. This new device can be ideal for preseparation and preconcentration of complex biomolecule samples for a streamlined biomolecule analysis using mass spectrometry.
本文描述了在微流控通道中实现更高效多维蛋白质分离的方法。新方法通过微芯片中的主动微阀控制,将等电聚焦(IEF)与高离子强度电泳分离相结合。进行了几项展示独立二维分离的实验,并确定了实现芯片最佳性能的关键参数,包括通道钝化、电渗控制和IEF线性控制。该策略可用于整合不同的异质分离技术,如IEF、毛细管电泳和液相色谱。这种新设备对于复杂生物分子样品的预分离和预浓缩来说可能是理想之选,以便使用质谱进行简化的生物分子分析。