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无电极介电泳在生物分析中的应用:理论、装置与应用。

Electrodeless dielectrophoresis for bioanalysis: theory, devices and applications.

机构信息

Experimental Biophysics and Applied Nanoscience, Faculty of Physics, Bielefeld University, Bielefeld, Germany.

出版信息

Electrophoresis. 2011 Sep;32(17):2253-73. doi: 10.1002/elps.201100055.

Abstract

Dielectrophoresis is a non-destructive, label-free method to manipulate and separate (bio-) particles and macromolecules. The mechanism is based on the movement of polarizable objects in an inhomogeneous electric field. Here, microfluidic devices are reviewed that generate those inhomogeneous electric fields with insulating posts or constrictions, an approach called electrodeless or insulator-based dielectrophoresis. Possible advantages compared to electrode-based designs are a less complex, monolithic fabrication process with low-cost polymeric substrates and no metal surface deterioration within the area of sample analysis. The electrodeless design has led to novel devices, implementing the functionality directly into the channel geometry and covering many areas of bioanalysis, like manipulation and separation of particles, cells, DNA, and proteins.

摘要

介电泳是一种无损、无需标记的方法,可用于操纵和分离(生物)颗粒和大分子。其机制基于在非均匀电场中可极化物体的运动。本文综述了使用绝缘柱或限制结构产生非均匀电场的微流控器件,这种方法称为无电极或基于绝缘体的介电泳。与基于电极的设计相比,无电极设计具有更简单、更具成本效益的整体制造工艺,可使用低成本聚合物衬底,并且在样品分析区域内不会出现金属表面劣化等可能的优势。无电极设计催生了许多新型器件,这些器件将功能直接集成到通道几何结构中,覆盖了生物分析的许多领域,如颗粒、细胞、DNA 和蛋白质的操纵和分离。

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