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Rapid Formation of Aggregates with Uniform Numbers of Cells Based on Three-dimensional Dielectrophoresis

机译:基于三维介电泳的细胞数目均匀的聚集体快速形成

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We applied a fabrication method for the formation of island organization of cells based on a three-dimensional (3D) device for negative dielectrophoresis (n-DEP) to produce cell aggregates with uniform numbers of cells rapidly and simply. The intersections formed by rotating the interdigitated array (IDA) with two combs of band electrodes on the upper substrate by 90° relative to the IDA with two combs on the lower substrate were prepared in the device. The AC voltage was applied to a comb on the upper substrate and a comb on the lower substrate, while AC voltage with opposite phase was applied to another comb on the upper substrate and another comb on the lower substrate. Cells dispersed randomly were directed toward the intersections with relatively lower electric fields due to n-DEP, which formed by AC voltage applied bands with the identical phase, resulting in the formation of island patterns of cells. The cells accumulated at intersections were promoted to form the cell aggregates due to the close contact together. The production of cell aggregations adhered together was easily found by the dispersion behavior after switching the applied frequency to convert the cellular pattern. When cells were accumulated at the intersections by n-DEP for 45 min, almost accumulations of cells were adhered together, and hence a formations of cell aggregations. By using the present method, we can rapidly and simply fabricate cell aggregations with a uniform number of cells.
机译:我们应用了一种基于负介电电泳(n-DEP)的三维(3D)装置来形成细胞岛结构的制造方法,以快速,简单地生产出具有均匀数目细胞的细胞聚集体。在该装置中,准备了通过使上基板上的两个梳状带状电极的叉指阵列(IDA)相对于下基板上的两个梳状状的IDA旋转90°而形成的交叉点。将AC电压施加到上基板上的梳子和下基板上的梳子,而将具有相反相位的AC电压施加到上基板上的另一梳子和下基板上的另一梳子。由于n-DEP,随机分散的细胞被引导到具有相对较低电场的交叉点,n-DEP是由交流电压施加的具有相同相位的带形成的,从而形成了细胞的岛状图案。由于紧密接触在一起,在交叉点处积累的细胞被促进形成细胞聚集体。切换施加的频率以转换细胞模式后,通过分散行为很容易发现粘附在一起的细胞聚集体的产生。当细胞通过n-DEP在交叉点处累积45分钟时,几乎所有的细胞都粘附在一起,从而形成细胞聚集。通过使用本发明的方法,我们可以快速而简单地制造出具有相同数量细胞的细胞聚集体。

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