Department of Mechanical and Mechatronics Engineering, University of Waterloo, Waterloo, Ontario, Canada.
Electrophoresis. 2012 Sep;33(17):2703-10. doi: 10.1002/elps.201200283.
Micellar affinity gradient focusing (MAGF) is a microfluidic counterflow gradient focusing technique that combines the favorable features of MEKC and temperature gradient focusing. MAGF separates analytes on the basis of a combination of electrophoretic mobility and partitioning with the micellar phase. A temperature gradient is produced along the separation channel containing an analyte/micellar system to create a gradient in interaction strength (retention factor) between the analytes and micelles. Combined with a bulk counterflow, species concentrate at a unique point where their total velocity sums to zero. MAGF can be used in scanning mode by varying the bulk flow so that a large number of analytes can be sequentially focused and passed by a single detection point. In this work, we develop a bilinear temperature gradient along the separation channel that improves separation performance over the conventional linear designs. The temperature profile along the channel consists of a very sharp gradient used to preconcentrate the sample followed by a shallow gradient that increases resolution. We fabricated a hybrid PDMS/glass microfluidic chip with integrated micro heaters that generate the bilinear profile. Performance is characterized by separating several different samples including fluorescent dyes using SDS surfactant and pI markers using both SDS and poly-SUS surfactants as the micellar phase. The new design shows a nearly two times improvement in peak capacity and resolution in comparison to the standard linear temperature gradient.
胶束亲和梯度聚焦(MAGF)是一种微流控逆流梯度聚焦技术,它结合了 MEKC 和温度梯度聚焦的优点。MAGF 根据电泳迁移率和与胶束相分配的组合分离分析物。在含有分析物/胶束体系的分离通道中产生温度梯度,以在分析物和胶束之间产生相互作用强度(保留因子)的梯度。与主体逆流结合,物质在其总速度之和为零的独特点处浓缩。通过改变主体流动,MAGF 可以在扫描模式下使用,从而可以通过单个检测点顺序聚焦和通过大量分析物。在这项工作中,我们沿着分离通道开发了双线性温度梯度,从而提高了分离性能超过传统的线性设计。通道沿线的温度曲线由用于预浓缩样品的非常陡的梯度组成,然后是增加分辨率的浅梯度。我们制造了一种具有集成微加热器的混合 PDMS/玻璃微流控芯片,可产生双线性曲线。通过使用 SDS 表面活性剂分离几种不同的样品,包括荧光染料,以及使用 SDS 和多 SUS 表面活性剂作为胶束相分离 pI 标记物,来表征性能。与标准线性温度梯度相比,新设计的峰容量和分辨率提高了近两倍。