Biomedical Engineering Department, McGill University, Montreal, QC H3A 2B4, Canada.
Lab Chip. 2010 Nov 21;10(22):3043-53. doi: 10.1039/c0lc00130a. Epub 2010 Sep 29.
The detection, isolation and sorting of cells are important tools in both clinical diagnostics and fundamental research. Advances in microfluidic cell sorting devices have enabled scientists to attain improved separation with comparative ease and considerable time savings. Despite the great potential of Lab-on-Chip cell sorting devices for targeting cells with desired specificity and selectivity, this field of research remains unexploited. The challenge resides in the detection techniques which has to be specific, fast, cost-effective, and implementable within the fabrication limitations of microchips. Adhesion-based microfluidic devices seem to be a reliable solution compared to the sophisticated detection techniques used in other microfluidic cell sorting systems. It provides the specificity in detection, label-free separation without requirement for a preprocessing step, and the possibility of targeting rare cell types. This review elaborates on recent advances in adhesion-based microfluidic devices for sorting, detection and enrichment of different cell lines, with a particular focus on selective adhesion of desired cells on surfaces modified with ligands specific to target cells. The effect of shear stress on cell adhesion in flow conditions is also discussed. Recently published applications of specific adhesive ligands and surface functionalization methods have been presented to further elucidate the advances in cell adhesive microfluidic devices.
细胞的检测、分离和分选是临床诊断和基础研究的重要工具。微流控细胞分选设备的进步使科学家能够更轻松、更快速地实现更好的分离,同时节省大量时间。尽管芯片上实验室细胞分选设备在针对具有所需特异性和选择性的细胞方面具有巨大潜力,但该研究领域仍未得到充分利用。挑战在于检测技术必须具有特异性、快速、具有成本效益,并且能够在微芯片的制造限制内实施。与其他微流控细胞分选系统中使用的复杂检测技术相比,基于黏附的微流控设备似乎是一种可靠的解决方案。它在检测中提供了特异性,无需预处理步骤即可实现无标记分离,并有可能针对稀有细胞类型。本文综述了基于黏附的微流控设备在不同细胞系的分选、检测和富集方面的最新进展,特别关注了用针对靶细胞的配体修饰表面后对所需细胞的选择性黏附。还讨论了剪切应力对流动条件下细胞黏附的影响。介绍了特定黏附配体和表面功能化方法的最新应用,以进一步阐明细胞黏附微流控设备的进展。