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Microchip System for Patterning Cells on Different Substrates via Negative Dielectrophoresis

机译:用于通过负介电电泳在不同基板上对细胞进行图案化的Microchip系统

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Seeding cells on a planar substrate is the first step to construct artificial tissues in vitro. Cells should be organized into a pattern similar to native tissues and cultured on a favorable substrate to facilitate desirable tissue ingrowth. In this study, a microchip system is designed and fabricated to form cells into a specific pattern on different substrates. The system consists of a microchip with a dot-electrode array for cell trapping and patterning and two motorized platforms for providing relative motions between the microchip and the substrate. AC voltage is supplied to the selected electrodes by using a programmable micro control unit to control relays connected to the dot-electrodes. Nonuniform electric fields for cell manipulation are formed via negative dielectrophoresis (n-DEP). Experiments were conducted to create different patterns by using yeast cells. The effects of different experimental parameters and material properties on the patterning efficiency were evaluated and analyzed. Mechanisms to remove abundant cells surrounding the constructed patterns were also examined. Results show that the microchip system could successfully create cell patterns on different substrates. The use of calcium chloride (CaCl$_2$) enhanced the cell adhesiveness on the substrate. The proposed n-DEP patterning technique offers a new method for constructing artificial tissues with high flexibility on cell patterning and selecting substrate to suit application needs.
机译:在平面基板上播种细胞是体外构建人工组织的第一步。细胞应组织成与天然组织相似的模式,并在有利的基质上培养以促进所需的组织向内生长。在这项研究中,设计并制造了一种微芯片系统,以在不同的基板上将细胞形成特定的图案。该系统由一个带有用于细胞捕获和图案化的点电极阵列的微芯片,以及两个用于在微芯片和基板之间提供相对运动的电动平台组成。通过使用可编程微控制单元控制连接到点电极的继电器,将交流电压提供给选定的电极。通过负介电电泳(n-DEP)形成用于细胞操作的非均匀电场。进行了实验以通过使用酵母细胞产生不同的模式。评估和分析了不同的实验参数和材料特性对图案形成效率的影响。还研究了去除围绕构建的模式的大量细胞的机制。结果表明,微芯片系统可以成功地在不同的基板上创建细胞图案。氯化钙(CaCl $ _2 $)的使用增强了基材上的细胞粘附性。提出的n-DEP构图技术提供了一种新的方法,可以在细胞构图上构建具有高度灵活性的人造组织,并选择适合应用需求的基质。

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