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首页> 外文期刊>Cytotechnology >Optimization of an electroporation protocol using the K562 cell line as a model: role of cell cycle phase and cytoplasmic DNAses
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Optimization of an electroporation protocol using the K562 cell line as a model: role of cell cycle phase and cytoplasmic DNAses

机译:使用K562细胞系作为模型的电穿孔方案的优化:细胞周期阶段和细胞质DNA酶的作用

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The improvement of gene therapy protocols is intimately related to the establishment of efficient gene transfer methods. Electroporation has been increasingly employed in in vitro and in vivo protocols, and much attention has been given to increasing its transfection potential. The method is based on the application of an electric field of short duration and high voltage to the cells, forming reversible pores through which molecules can enter the cell. In this work, we describe the optimization of a protocol for the electroporation of K562 cells involving the combination of electric field, resistance and capacitance values. Using RPMI 1640 as pulsing buffer and 30 μg of pEGFP-N1 plasmid, 875 V cm−1, 500 μF and infinite resistance, we achieved transfection rates of 82.41 ± 3.03%, with 62.89 ± 2.93% cell viability, values higher than those reported in the literature. Analyzing cell cycle after electroporation, with three different electric field conditions, we observed that in a heterogeneous population of cells, viability of G1 cells is less affected by electroporation than that of cells in late S and G2/M phases. We also observed that efficiency of electroporation can be improved using the DNAse inhibitor Zn, immediately after the pulse. These results can represent a significant improvement of current methods of electroporation of animal and plant cells.
机译:基因治疗方案的改进与有效基因转移方法的建立密切相关。电穿孔已在体外和体内方案中得到越来越多的应用,并且已经对其提高转染潜力给予了极大的关注。该方法基于向细胞施加短时和高电压的电场,从而形成分子可通过其进入细胞的可逆孔。在这项工作中,我们描述了电穿孔K562细胞的协议的优化,涉及电场,电阻和电容值的组合。使用RPMI 1640作为脉冲缓冲液和30μgpEGFP-N1质粒,875 V cm-1 ,500μF和无限的抗性,我们获得了82.41±3.03%的转染率,具有62.89±2.93%的细胞生存力,值高于文献报道的那些。通过在三种不同的电场条件下对电穿孔后的细胞周期进行分析,我们观察到,在异质细胞群体中,G1 细胞的活力受电穿孔的影响要小于S和G2 /晚期的细胞。 M个阶段。我们还观察到,在脉冲后立即使用DNAse抑制剂Zn可以提高电穿孔的效率。这些结果可以代表对动物和植物细胞电穿孔的当前方法的重大改进。

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