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A Flow-Through Cell Electroporation Device for Rapidly and Efficiently Transfecting Massive Amounts of Cells in vitro and ex vivo

机译:一种流通细胞电穿孔装置,用于快速有效地转染大量的细胞在体外的含量和前体内

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Continuous cell electroporation is an appealing non-viral approach for genetically transfecting a large number of cells. Yet the traditional macro-scale devices suffer from the unsatisfactory transfection efficiency and/or cell viability due to their high voltage, while the emerging microfluidic electroporation devices is still limited by their low cell processing speed. Here we present a flow-through cell electroporation device integrating large-sized flow tube and small-spaced distributed needle electrode array. Relatively large flow tube enables high flow rate, simple flow characterization and low shear force, while well-organized needle array electrodes produce an even-distributed electric field with low voltage. Thus the difficulties for seeking the fine balance between high flow rate and low electroporation voltage were steered clear. Efficient in vitro electrotransfection of plasmid DNA was demonstrated in several hard-to-transfect cell lines. Furthermore, we also explored ex vivo electroporated mouse erythrocyte as the carrier of RNA. The strong ability of RNA loading and short exposure time of freshly isolated cells jointly ensured a high yield of valid carrier erythrocytes, which further successfully delivered RNA into targeted tissue. Both in vitro and ex vivo electrotransfection could be accomplished at high cell processing speed (20 million cells per minute) which remarkably outperforms previous devices.
机译:连续细胞电穿孔是一种吸引人的非病毒方法,用于遗传转发大量细胞。然而,传统的宏观尺度装置由于其高电压而遭受不令人满意的转染效率和/或细胞活力,而新出现的微流体电穿孔装置仍然受到它们的低电池处理速度的限制。在这里,我们介绍了一流的电池电穿孔装置,其集成了大型流管和小间隔的分布针电极阵列。相对较大的流量管能够实现高流速,简单的流动表征和低剪切力,而组织良好的针阵电极具有低电压的均匀分布电场。因此,在透明的情况下,可以在高流速和低电穿孔电压之间寻找细平衡的困难。在几种硬质染色细胞系中证明了质粒DNA的高效体外电粉。此外,我们还探索了例如RNA载体的离体电穿孔小鼠红细胞。新鲜分离的细胞的RNA装载和短曝光时间的强能力共同确保了高产的有效载体红细胞,进一步成功地将RNA递送到靶向组织中。体外和离体电扫基中的两者均可以在高电池处理速度(每分钟20百万个细胞)上完成,这显着优于先前的设备。

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