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DEVELOPMENT OF BIO-MEMS DEVICE FOR CELL CLUSTER PATTERNING BY USING DIELECTROPHORESIS METHOD

机译:使用介电泳方法开发用于细胞聚类图案化的Bio-MEMS装置

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Recently, the investigation of cell-activation and tissue regeneration process has shown the great progress in the biomedical and biomechanical research fields. In this study fabricated Biomedical-Micro Electric Mechanical System (Bio-MEMS) to examine accurately the cell activation by introducing the cell patterning assignment technique, which consists of the photolithograph method to generate the MEMS device and the cell patterning technique by using the dielectrophoresis (DEP) method. In the development of Bio-MEMS devices for cell culture and micro-bioreactor system, unresolved subjects, 1) the fundamental mechanism of cell activation, 2) the flow control of culture medium 3) the accurate cell pattern technique and 4) the implementation of positive DEP methods, are remained. In this study, we fabricate 2-D patterns of point by using the DEP method introducing the positive effects and the trap method by employing the gravity effect and the adhesion technique, to reveal the fundamental mechanism of cell activations, such as the nerve cell axon extension. We succeed to establish the cell patterning technique by using a novel electrode design technique, such as 2-D patterns of point. The results is shown that our novel approach using comprehensive designed electrodes is superior to cell patterning. Therefore, our device able to produce neural network consists of a large number of cells.
机译:最近,细胞活化和组织再生过程的调查显示了生物医学和生物力学研究领域的巨大进展。在该研究中,通过引入细胞图案化分配技术,精确地检查生物医学微型电动机械系统(Bio-MEMS),该方法通过引入细胞图案化分配技术来检查电池激活,该分配技术由光刻方法和通过使用介电泳来产生MEMS器件和电池图案化技术( DEP)方法。在开发Bio-MEMS装置的细胞培养和微生物反应器系统,未解决的受试者,1)细胞活化的基本机制,2)培养基的流量控制3)精确的细胞模式技术和4)实施仍然存在正DEP方法。在这项研究中,我们通过使用重力效应和粘附技术来制造通过使用的DEP方法来制造2-D点的点模式,以揭示细胞活性的基本机制,例如神经细胞轴突延期。我们通过使用一种新颖的电极设计技术来实现细胞图案化技术,例如点的二维图案。结果表明,我们使用综合设计电极的新方法优于细胞图案化。因此,我们的设备能够产生神经网络由大量的单元组成。

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