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Dielectrophoretic Immobilization of Yeast Cells Using CMOS Integrated Microfluidics

机译:CMOS集成微流控技术对酵母细胞的介电泳固定

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摘要

This paper presents a dielectrophoretic system for the immobilization and separation of live and dead cells. Dielectrophoresis (DEP) is a promising and efficient investigation technique for the development of novel lab-on-a-chip devices, which characterizes cells or particles based on their intrinsic and physical properties. Using this method, specific cells can be isolated from their medium carrier or the mixture of cell suspensions (e.g., separation of viable cells from non-viable cells). Main advantages of this method, which makes it favorable for disease (blood) analysis and diagnostic applications are, the preservation of the cell properties during measurements, label-free cell identification, and low set up cost. In this study, we validated the capability of complementary metal-oxide-semiconductor (CMOS) integrated microfluidic devices for the manipulation and characterization of live and dead yeast cells using dielectrophoretic forces. This approach successfully trapped live yeast cells and purified them from dead cells. Numerical simulations based on a two-layer model for yeast cells flowing in the channel were used to predict the trajectories of the cells with respect to their dielectric properties, varying excitation voltage, and frequency.
机译:本文提出了一种用于固定和分离活细胞和死细胞的介电泳系统。介电电泳(DEP)是用于开发新型芯片实验室设备的有前途且有效的研究技术,该设备可根据细胞或颗粒的内在和物理特性对其进行表征。使用这种方法,可以从它们的培养基载体或细胞悬浮液的混合物中分离特定的细胞(例如,将活细胞与非活细胞分离)。该方法的主要优点是有利于疾病(血液)分析和诊断应用,包括在测量过程中保留细胞特性,无需标记的细胞鉴定以及较低的设置成本。在这项研究中,我们验证了互补金属氧化物半导体(CMOS)集成微流控设备利用介电泳力对活和死酵母细胞进行操纵和表征的能力。这种方法成功地捕获了活酵母细胞,并从死细胞中纯化了它们。基于两层模型的酵母细胞在通道中流动的数值模拟被用来预测细胞的介电特性,变化的激发电压和频率的轨迹。

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