介电泳
微流控
微通道
纳米技术
微流控芯片
材料科学
酵母
实验室晶片
计算机科学
化学
生物化学
作者
Saurin Patel,Daniel Showers,Pallavi Vedantam,Tzuen‐Rong Tzeng,Shizhi Qian,Xiangchun Xuan
出处
期刊:Biomicrofluidics
[American Institute of Physics]
日期:2012-07-13
卷期号:6 (3)
被引量:128
摘要
Separating live and dead cells is critical to the diagnosis of early stage diseases and to the efficacy test of drug screening, etc. This work demonstrates a novel microfluidic approach to dielectrophoretic separation of yeast cells by viability. It exploits the cell dielectrophoresis that is induced by the inherent electric field gradient at the reservoir-microchannel junction to selectively trap dead yeast cells and continuously separate them from live ones right inside the reservoir. This approach is therefore termed reservoir-based dielectrophoresis (rDEP). It has unique advantages as compared to existing dielectrophoretic approaches such as the occupation of zero channel space and the elimination of any mechanical or electrical parts inside microchannels. Such an rDEP cell sorter can be readily integrated with other components into lab-on-a-chip devices for applications to biomedical diagnostics and therapeutics.
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