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Biological microparticles detection based on differential capacitive sensing and dielectrophoresis manipulation

机译:基于差分电容感测和介电电泳操作的生物微粒检测

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The manipulation and detection of living cells are essential requirements for many applications in biology, biotecnology and medicine. In this study, we propose a microfluidic device, which facilitated of a differential capacitively coupled contactless conductively detection (DC4D) coplanar capacitor structure and a dielectrophoresis (DEP) concentrator based on circular electrodes for detecting of living cells. With the proposed device, first, the target and non-target cells are guided toward the center of the working chamber due to the dielectrophoresis forces. Then the target cells are captured by the electrode covered with aptamers, which possess a high affinity to the target cells. After being flushed to wash away the non-target cells in the working chamber, the differential capacitance is read to identify the presence of target cells. Numerical simulations of the DEP manipulation and DC4D were performed to proof the concept of the proposed design. A prototype of the proposed device was fabricated using micromachining technology. Manipulation and sensing performances of the device were investigated. The evaluation results show that the capacitance output changes up to 3fF corresponding to the presence of about twenty-five cells captured at the electrode.
机译:活细胞的操纵和检测是生物学,生物技术和医学中许多应用的基本要求。在这项研究中,我们提出了一种微流体装置,该装置有助于实现差分电容耦合非接触导电检测(DC4D)共面电容器结构和基于圆形电极的介电泳(DEP)浓缩器,用于检测活细胞。利用所提出的装置,首先,由于介电电泳力,靶细胞和非靶细胞被引导向工作室的中心。然后,靶细胞被覆盖有适体的电极捕获,该适体对靶细胞具有高亲和力。在冲洗掉工作室中的非靶细胞后,读取差分电容以识别靶细胞的存在。进行了DEP操纵和DC4D的数值模拟,以证明所提出设计的概念。拟议设备的原型是使用微加工技术制造的。研究了该装置的操纵和感测性能。评估结果表明,对应于在电极处捕获的约25个电池的存在,电容输出变化高达3fF。

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