Department of Chemistry, University of Alberta, Edmonton, AB, Canada.
Electrophoresis. 2012 Nov;33(21):3151-8. doi: 10.1002/elps.201200286. Epub 2012 Sep 5.
A microfluidic device that performs "in space" sample fractionation, collection, and preconcentration for proteomics is described. Effluents from a 2.75 mm long fractionation channel, focused via sheath flow, were sequentially delivered into an array of 36-collection channels containing monolithic polymer beds for SPE. Optimum conditions for the device design, and simultaneous photolytic fabrication of 36 monolithic columns in the 36 channels, as well as for their proper performance in electrokinetic sample fractionation and collection are described. A hydrophobic butyl methacrylate-based monolithic porous polymer was copolymerized with an ionizable monomer, acryloamido-methyl-propane sulfonate, to form a polymer monolith for SPE that also sustains cathodic electroosmotic flow. The SPE bed was made deep enough to greatly reduce the linear flow rate within the bed, in order to compensate for the lower electroosmotic mobility of the cationically charged SPE bed relative to the glass walled device. Under these conditions, electrokinetic fractionation of a protein sample resulted in tightly focused sample zones delivered into each of the 36-channel polymer beds with no observed crosscontamination. Monolithic columns showed reproducible performance with preconcentration factor of 30 for 2 min loading time. The ability to fractionate, collect, and preconcentrate samples on a microfluidic platform will be especially useful for automated or continuous operation of these devices in proteomics research.
描述了一种用于蛋白质组学的微流控装置,该装置可在“空间”中进行样品馏分收集和预浓缩。通过鞘流聚焦的 2.75 毫米长的馏分通道的流出物依次递送到含有用于 SPE 的整体聚合物床的 36 个收集通道的阵列中。描述了用于该装置设计的最佳条件,以及在 36 个通道中同时进行 36 个整体柱的光解制造以及它们在电动样品馏分收集和收集方面的适当性能。将疏水性的甲基丙烯酸丁酯基整体多孔聚合物与可离子化的单体丙烯酰胺基甲基丙烷磺酸钠共聚,形成用于 SPE 的聚合物整体柱,同时还维持阴极电渗流。SPE 床做得足够深,以大大降低床内的线性流速,以补偿相对于玻璃壁装置带正电荷的 SPE 床的电渗流迁移率较低。在这些条件下,蛋白质样品的电动馏分收集导致紧密聚焦的样品区递送到 36 个通道聚合物床中的每一个,而没有观察到交叉污染。整体柱在 2 分钟加载时间内表现出可重现的性能,预浓缩因子为 30。在微流控平台上进行馏分收集和预浓缩的能力对于这些设备在蛋白质组学研究中的自动化或连续操作将特别有用。