Bao Ning, Wang Jun, Lu Chang
Department of Agricultural and Biological Engineering, Purdue University, 225 South University Street, West Lafayette, IN 47907, USA.
Anal Bioanal Chem. 2008 Jun;391(3):933-42. doi: 10.1007/s00216-008-1899-x. Epub 2008 Mar 12.
Microfluidics offers an ideal platform to integrate cell-based assays with electric measurements. The technological advances in microfluidics, microelectronics, electrochemistry, and electrophysiology have greatly inspired the development of microfluidic/electric devices that work with a low number of cells or single cells. The applications of these microfluidic systems range from the detecting of cell culture density to the probing of cellular functions at the single-cell level. In this review, we introduce the recent advances in the electric analysis of cells on a microfluidic platform, specifically related to the quantification and monitoring of cells in static solution, on-chip patch-clamp measurement, and examination of flowing cells. We also point out future directions and challenges in this field.
微流控技术为将基于细胞的分析与电学测量相结合提供了一个理想平台。微流控技术、微电子学、电化学和电生理学方面的技术进步极大地推动了可处理少量细胞或单个细胞的微流控/电子设备的发展。这些微流控系统的应用范围从细胞培养密度的检测到单细胞水平上细胞功能的探测。在本综述中,我们介绍了微流控平台上细胞电学分析的最新进展,特别是与静态溶液中细胞的定量和监测、芯片上膜片钳测量以及流动细胞检测相关的进展。我们还指出了该领域未来的方向和挑战。