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CARBON CONE ELECTRODES FOR SELECTION, MANIPULATION AND LYSIS OF SINGLE CELLS

机译:用于单细胞选择,操纵和裂解的碳锥电极

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Here we present initial experiments towards an integrated platform for single cell selection, manipulation and lysis. The premise is that an array of polarized conical carbon electrodes can be dipped in a cell culture, trap cells of interest using dielectrophoresis and transport them to specific locations where they can be lyzed electrically. We aim at developing an automated tool to extract intracellular components from targeted particles over specific locations, i.e., a DNA microarray or other functionalized spots. What we contribute in this work is modeling of the electric field and its gradient around carbon cones, as well as initial cone fabrication results. To the best of our knowledge, both the fabrication of conical glassy carbon electrodes and the general concept of the proposed platform are novel. Ongoing work is on demonstrating cell trapping and lysis using these conical electrodes by only varying the magnitude and frequency of their polarizing AC signal.
机译:在这里,我们介绍了针对单个细胞选择,操作和裂解的集成平台的初步实验。前提是可以将极化的锥形碳电极阵列浸入细胞培养物中,使用介电电泳捕获感兴趣的细胞,并将其运输到可以电裂解的特定位置。我们旨在开发一种自动化工具,从特定位置(即DNA微阵列或其他功能化斑点)的目标颗粒中提取细胞内组分。我们在这项工作中所做的贡献是对电场及其在碳锥周围的梯度进行建模,以及初始锥的制造结果。据我们所知,圆锥形玻璃碳电极的制造和所提出平台的一般概念都是新颖的。正在进行的工作是通过仅改变其极化交流信号的幅度和频率来证明使用这些锥形电极的细胞捕获和裂解。

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