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Electrotransfection of mammalian cells using microchannel-type electroporation chip

机译:使用微通道型电穿孔芯片对哺乳动物细胞进行电转染

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Transfection of DNA molecules into mammalian cells with electric pulsations, which is so-called electroporation, is a powerful and widely used method that can be directly applied to gene therapy. However, very little is known about the basic mechanisms of DNA transfer and cell response to the electric pulse. We developed a microelectroporation chip with poly(dimethylsiloxane) (PDMS) to investigate the mechanism of electroporation as a first step of DNA transfer and to introduce the benefits of miniaturization into the genetic manipulation. The microelectroporation chip has a microchannel with a height of 20 jam and a length of 2 cm. Owing to the transparency of PDMS, we could in situ observe the uptake process of propidium iodide (PI) into SK-OV-3 cells, which shows promise in visualization of gene delivery in living cells. We also noticed the geometric effect on the degree of electroporation in microchannels with diverse channel width. This experimental result shows that the geometry can be another parameter to be considered for the electroporation when it is performed in microchannels with an exponential decaying pulse generator. Cell culturing is possible within the microelectroporation chip, and we also successfully transfected SK-OV-3 cells with enhanced green fluorescent protein genes, which demonstrates the feasibility of the microelectroporation chip in genetic manipulation.
机译:用电脉冲将DNA分子转染到哺乳动物细胞中,即所谓的电穿孔,是一种功能强大且广泛使用的方法,可以直接应用于基因治疗。然而,关于DNA转移和细胞对电脉冲反应的基本机制知之甚少。我们开发了一种带有聚二甲基硅氧烷(PDMS)的微电穿孔芯片,以研究电穿孔作为DNA转移的第一步的机理,并将小型化的好处引入遗传操作中。所述微电穿孔芯片具有高度为20个果酱且长度为2cm的微通道。由于PDMS的透明性,我们可以原位观察碘化丙啶(PI)进入SK-OV-3细胞的摄取过程,这在活细胞基因传递的可视化中显示出希望。我们还注意到在不同通道宽度的微通道中,电穿孔程度的几何影响。该实验结果表明,当在具有指数衰减脉冲发生器的微通道中进行电穿孔时,几何形状可以作为电穿孔需要考虑的另一个参数。在微电穿孔芯片中可以进行细胞培养,并且我们还成功地用增强的绿色荧光蛋白基因转染了SK-OV-3细胞,这证明了微电穿孔芯片在基因操作中的可行性。

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