首页> 外文期刊>The Journal of Membrane Biology >The Systematic Study of the Electroporation and Electrofusion of B16-F1 and CHO Cells in Isotonic and Hypotonic Buffer
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The Systematic Study of the Electroporation and Electrofusion of B16-F1 and CHO Cells in Isotonic and Hypotonic Buffer

机译:等渗和低渗缓冲液中B16-F1和CHO细胞电穿孔和电融合的系统研究

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The fusogenic state of the cell membrane can be induced by external electric field. When two fusogenic membranes are in close contact, cell fusion takes place. An appropriate hypotonic treatment of cells before the application of electric pulses significantly improves electrofusion efficiency. How hypotonic treatment improves electrofusion is still not known in detail. Our results indicate that at given induced transmembrane potential electroporation was not affected by buffer osmolarity. In contrast to electroporation, cells’ response to hypotonic treatment significantly affects their electrofusion. High fusion yield was observed when B16-F1 cells were used; this cell line in hypotonic buffer resulted in 41 ± 9 % yield, while in isotonic buffer 32 ± 11 % yield was observed. Based on our knowledge, these fusion yields determined in situ by dual-color fluorescence microscopy are among the highest in electrofusion research field. The use of hypotonic buffer was more crucial for electrofusion of CHO cells; the fusion yield increased from below 1 % in isotonic buffer to 10 ± 4 % in hypotonic buffer. Since the same degree of cell permeabilization was achieved in both buffers, these results indicate that hypotonic treatment significantly improves fusion yield. The effect could be attributed to improved physical contact of cell membranes or to enhanced fusogenic state of the cell membrane itself.
机译:细胞膜的融合状态可以由外部电场诱导。当两个融合膜紧密接触时,就会发生细胞融合。在施加电脉冲之前对细胞进行适当的低渗处理可显着提高电融合效率。低渗治疗如何改善电融合尚不清楚。我们的结果表明,在给定的诱导跨膜电位下,电穿孔不受缓冲液渗透压的影响。与电穿孔相反,细胞对低渗治疗的反应会显着影响其电融合。当使用B16-F1细胞时,观察到高融合产量;该细胞系在低渗缓冲液中的产率为41±9%,而在等渗缓冲液中的产率为32±11%。根据我们的知识,通过双色荧光显微镜原位测定的这些融合产率是电融合研究领域中最高的。低渗缓冲液的使用对于CHO细胞的电融合更为关键。融合产率从等渗缓冲液中的低于1%增加到低渗缓冲液中的10±4%。由于在两种缓冲液中都达到了相同程度的细胞通透性,因此这些结果表明低渗处理可显着提高融合产量。该作用可归因于细胞膜的物理接触改善或细胞膜本身的融合状态增强。

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