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首页> 外文期刊>Journal of Micromechanics and Microengineering >Continuous-mode dielectrophoretic gating for highly efficient separation of analytes in surface micromachined microfluidic devices
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Continuous-mode dielectrophoretic gating for highly efficient separation of analytes in surface micromachined microfluidic devices

机译:连续模式介电电泳选通用于高效分离表面微加工微流体装置中的分析物

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摘要

Here, we describe a dielectrophoretic (DEP) gating technique for preconcentrating and separating biological and non-biological particles in a microfluidic device. The microfluidic devices are surface-micromachined on silicon substrates and are fully encapsulated without substrate bonding procedures. DEP gates in the devices consist of embedded microelectrodes that are coupled to the fluid channels for analyte manipulation with electric fields. We consider several different microelectrode designs such as low and high radius-of-curvature edges, and we detail the time- and frequency-dependent preconcentration of particles. Simulations of the particle motion under the manipulation of DEP forces are found to be in good agreement with the experimental results. Experimental results show that bioparticles such as Penicillium brevicompactum (PBC), T-cells and Escherichia coli (E. coli) undergo positive DEP and are trapped in regions of large electric-field gradient adjacent to the DEP gate. In contrast to our previous demonstration of batch-mode separation of particles with different dielectric properties, here we perform a continuous-mode separation of latex particles and E. coli from a mixture.
机译:在这里,我们描述了一种用于在微流控设备中预浓缩和分离生物和非生物颗粒的介电泳(DEP)门控技术。微流体装置在硅基板上进行了表面微加工,并且无需基板键合程序即可完全封装。装置中的DEP闸门由嵌入式微电极组成,这些微电极与流体通道耦合,可利用电场对分析物进行处理。我们考虑了几种不同的微电极设计,例如低和高曲率半径的边缘,并详细介绍了随时间和频率而定的粒子预浓缩。发现在DEP力的作用下粒子运动的模拟与实验结果非常吻合。实验结果表明,诸如短小青霉菌(PBC),T细胞和大肠杆菌(E. coli)的生物颗粒经历正DEP并被困在与DEP门相邻的大电场梯度区域中。与我们先前演示的具有不同介电特性的颗粒的分批模式分离相反,在这里,我们从混合物中进行胶乳颗粒和大肠杆菌的连续模式分离。

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