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Continuous-flow particle and cell separations in a serpentine microchannel via curvature-induced dielectrophoresis

机译:蛇形微通道中通过曲率诱导介电泳的连续流粒子和细胞分离

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摘要

Particle and cell separations are critical to chemical and biomedical analyses. This study demonstrates a continuous-flow electrokinetic separation of particles and cells in a serpentine microchannel through curvature-induced dielectrophoresis. The separation arises from the particle size-dependent cross-stream dielectrophoretic deflection that is generated by the inherent electric field gradients within channel turns. Through the use of a sheath flow to focus the particle mixture, we implement a continuous separation of 1 and 5 nm polystyrene particles in a serpentine microchannel under a 15 kV/m DC electric field. The effects of the applied DC voltages and the serpentine length on the separation performance are examined. The same channel is also demonstrated to separate yeast cells (range in diameter between 4 and 8 urn) from 3 urn particles under an electric field as low as 10 kV/m. The observed focusing and separation processes for particles and cells in the serpentine microchannel are reasonably predicted by a numerical model.
机译:颗粒和细胞的分离对于化学和生物医学分析至关重要。这项研究表明通过曲率诱导介电电泳的蛇形微通道中的粒子和细胞的连续流电动分离。这种分离是由于通道匝内固有的电场梯度所产生的,取决于粒度的横流介电泳偏转而引起的。通过使用鞘流聚焦颗粒混合物,我们在15 kV / m DC电场下在蛇形微通道中实现了1和5 nm聚苯乙烯颗粒的连续分离。研究了施加的直流电压和蛇形长度对分离性能的影响。在低至10 kV / m的电场下,同样的通道也被证明可以将酵母细胞(直径介于4至8 urn之间)与3颗粒分离。通过数值模型可以合理地预测所观察到的蛇形微通道中颗粒和细胞的聚焦和分离过程。

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