Ye Linquan, Wu Qingshi, Dai Simin, Xiao Zhiliang, Zhang Bo
College of Chemistry & Chemical Engineering, Xiamen University, Xiamen 361005, China.
Se Pu. 2011 Sep;29(9):857-61.
Proteomics demands high resolution multidimensional separation techniques due to its extremely high complexity. Droplet microfluidics provides a series of unique advantages in manipulating micro and nanolitre samples, such as micro-volume operation, limited diffusion and none cross-contaminating, therefore has the potential to be an ideal interface strategy for multidimensional separation. Using the microchips of different structures, functions such as "droplet generation" and "oil depletion" can be realized. Based on these functions, samples can be transferred from continuous flow to segmented flow and then back to continuous flow. In this way, different separation modes can be combined. In this study, droplet technology was utilized as a novel interface strategy in combining high performance liquid chromatography (HPLC) and capillary electrophoresis (CE). Using tryptic peptides mixture as a sample, this two dimensional HPLC-CE system provided high resolution separation with a peak capacity over 3000. This proof-of-principle study has demonstrated the usefulness of droplet interface technology in multidimensional separation.
由于蛋白质组学具有极高的复杂性,因此需要高分辨率的多维分离技术。微滴微流控技术在处理微升和纳升样品方面具有一系列独特优势,例如微体积操作、有限扩散和无交叉污染,因此有潜力成为多维分离的理想接口策略。使用不同结构的微芯片,可以实现“液滴生成”和“油相耗尽”等功能。基于这些功能,样品可以从连续流转移到分段流,然后再回到连续流。通过这种方式,可以组合不同的分离模式。在本研究中,液滴技术被用作一种新型接口策略,用于结合高效液相色谱(HPLC)和毛细管电泳(CE)。以胰蛋白酶肽混合物为样品,这种二维HPLC-CE系统提供了高分辨率分离,峰容量超过3000。这项原理验证研究证明了液滴接口技术在多维分离中的实用性。