介电泳
电极
微流控
流体学
材料科学
模块化设计
纳米技术
滤波器(信号处理)
微电子机械系统
足迹
光电子学
计算机科学
电气工程
工程类
化学
生物
操作系统
物理化学
古生物学
作者
Rodrigo Martínez‐Duarte,Robert Gorkin,Kameel Abi‐Samra,Marc Madou
出处
期刊:Lab on a Chip
[Royal Society of Chemistry]
日期:2010-01-01
卷期号:10 (8): 1030-1030
被引量:142
摘要
We introduce the integration of a novel dielectrophoresis (DEP)-assisted filter with a compact disk (CD)-based centrifugal platform. Carbon-electrode dielectrophoresis (carbon-DEP) refers to the use of carbon electrodes to induce DEP. In this work, 3D carbon electrodes are fabricated using the C-MEMS technique and are used to implement a DEP-enabled active filter to trap particles of interest. Compared to traditional planar metal electrodes, 3D carbon electrodes allow for superior filtering efficiency. The system includes mounting modular 3D carbon-DEP chips on an electrically interfaced rotating disk. This allows simple centrifugal pumping to replace the large footprint syringe pump approaches commonly used in DEP systems. The advantages of the CD setup include not only a reduced footprint, but also complexity and cost reduction by eliminating expensive precision pumps and fluidic interconnects. To demonstrate the viability of this system we quantified the filter efficiency in the DEP trapping of yeast cells from a mix of latex and yeast cells. Results demonstrate selective filtering at flow rates up to 35 microl min(-1). The impact of electrode height, DEP chip misalignment and particle sedimentation on filter efficiency and the advantages this system represents are analyzed. The ultimate goal is to obtain an automated platform for bioparticle sorting with application in different fields such as point-of-care diagnostics and cell-based therapies.
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