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Rapid Concentration of Nanoparticles with DC Dielectrophoresis in Focused Electric Fields

机译:聚焦电场中直流介电法快速浓缩纳米粒子

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摘要

We report a microfluidic device for rapid and efficient concentration of micro/nanoparticles with direct current dielectrophoresis (DC DEP). The concentrator is composed of a series of microchannels constructed with PDMS-insulating microstructures for efficiently focusing the electric field in the flow direction to provide high field strength and gradient. The location of the trapped and concentrated particles depends on the strength of the electric field applied. Both ‘streaming DEP’ and ‘trapping DEP’ simultaneously take place within the concentrator at different regions. The former occurs upstream and is responsible for continuous transport of the particles, whereas the latter occurs downstream and rapidly traps the particles delivered from upstream. The performance of the device is demonstrated by successfully concentrating fluorescent nanoparticles. The described microfluidic concentrator can be implemented in applications where rapid concentration of targets is needed such as concentrating cells for sample preparation and concentrating molecular biomarkers for detection.
机译:我们报告了一种微流体装置,用于通过直流电介电泳(DC DEP)快速有效地浓缩微米/纳米颗粒。集中器由一系列微通道组成,这些微通道由PDMS绝缘微结构构成,可有效地将电场集中在流动方向上,从而提供高场强和梯度。被捕集和集中的粒子的位置取决于所施加电场的强度。 “流式DEP”和“陷井DEP”同时在集中器的不同区域进行。前者发生在上游并负责颗粒的连续输送,而后者发生在下游并迅速捕集从上游输送的颗粒。该设备的性能通过成功地浓缩荧光纳米颗粒得以证明。所描述的微流控浓缩器可以在需要快速浓缩靶标的应用中实施,例如用于样品制备的浓缩细胞和用于检测的分子生物标记物的浓缩。

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