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Study of high-throughput cell electrofusion in a microelectrode-array chip

机译:微电极阵列芯片中高通量细胞电融合的研究

摘要

A microfabricated high-throughput cell electrofusion chip with 1,368 pairs of high aspect ratio silicon microelectrodes is presented. These microelectrodes, which were distributed in six individual microscale cell-fusion chambers, were covered with titanium and gold thin film to improve their electric conductivity as well as surface hydrophobility. Six chambers having different electrode distances make the chip highly suitable for fusing cells with different sizes. A microfluidic platform was set up for flowing control, cell manipulation and also experimental observation. Cells for electrofusion were first aligned at the prearranged locations by the dielectrophoretic force between two counter-electrodes, which benefits the traverse of electric pulse through the cell-cell contacting point for electroporation. Several on-chip cell electrofusion experiments have been carried out on different kinds of animal cells and plant protoplasts. Compared with conventional electrofusion methods, higher fusion efficiency was achieved on this device for precisely forming micropores on the proximate membranes of two contacting cells, and high throughput was also obtained due to the use of a large number of microelectrodes for cell manipulation and fusion. Moreover, a much lower power supply was required for the shorter distance between two counter-electrodes.
机译:提出了一种微加工的高通量细胞电融合芯片,该芯片具有1,368对高长宽比的硅微电极。这些微电极分布在六个单独的微型细胞融合室中,并覆盖有钛和金薄膜,以提高其电导率和表面疏水性。六个具有不同电极距离的腔室使芯片非常适合于融合不同尺寸的电池。建立了微流控平台,用于流动控制,细胞操作以及实验观察。首先通过两个反电极之间的介电泳力将用于电融合的细胞在预定位置对齐,这有利于通过电脉冲穿过细胞-细胞接触点进行电穿孔。已经对不同种类的动物细胞和植物原生质体进行了几项片上细胞电融合实验。与传统的电融合方法相比,在该设备上实现了更高的融合效率,可以在两个接触细胞的近膜上精确地形成微孔,并且由于使用了大量的微电极进行细胞操作和融合,因此也获得了高通量。此外,对于两个反电极之间的较短距离,需要更低的电源。

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