Institute of Organic Chemistry, CSIC, Madrid, Spain.
J Sep Sci. 2013 Aug;36(15):2530-7. doi: 10.1002/jssc.201300275. Epub 2013 Jul 8.
This work describes the development of an SDS-gel electrophoresis method for the analysis of major whey proteins (α-lactalbumin, β-lactoglobulin, and BSA) carried out in SU-8 microchips. The method uses a low-viscosity solution of dextran as a sieving polymer. A commercial coating agent (EOTrol LN) was added to the separation buffer to control the EOF of the chips. The potential of this coating agent to prevent protein adsorption on the walls of the SU-8 channels was also evaluated. Additionally, the fluorescence background of the SU-8 material was studied to improve the sensitivity of the method. By selecting an excitation wavelength of 532 nm at which the background fluorescence remains low and by replacing the mercury arc lamp by a laser in the detection system, an LOD in the nanomolar range was achieved for proteins derivatized with the fluorogenic reagent Chromeo P540. Finally, the method was applied to the analysis of milk samples, demonstrating the potential of SU-8 microchips for the analysis of proteins in complex food samples.
这项工作描述了一种在 SU-8 微芯片上进行的 SDS-凝胶电泳分析主要乳蛋白(α-乳白蛋白、β-乳球蛋白和 BSA)的方法的开发。该方法使用低粘度的葡聚糖溶液作为筛分聚合物。在分离缓冲液中添加了一种商业涂层剂(EOTrol LN),以控制芯片的 EOF。还评估了这种涂层剂防止蛋白质在 SU-8 通道壁上吸附的能力。此外,研究了 SU-8 材料的荧光背景,以提高方法的灵敏度。通过选择在背景荧光较低的 532nm 激发波长,并在检测系统中用激光代替汞弧灯,实现了用荧光试剂 Chromeo P540 衍生化的蛋白质的纳摩尔级 LOD。最后,该方法应用于牛奶样品的分析,证明了 SU-8 微芯片在分析复杂食品样品中的蛋白质的潜力。