首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Cell-cell electrofusion: optimization of electric field amplitude and hypotonic treatment for mouse melanoma (B16-F1) and Chinese Hamster ovary (CHO) cells.
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Cell-cell electrofusion: optimization of electric field amplitude and hypotonic treatment for mouse melanoma (B16-F1) and Chinese Hamster ovary (CHO) cells.

机译:细胞间电融合:优化小鼠黑素瘤(B16-F1)和中国仓鼠卵巢(CHO)细胞的电场幅度和低渗治疗。

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摘要

Efficient electroporation of cells in physical contact induces cell fusion, and this process is known as electrofusion. It has been shown that appropriate hypotonic treatment of cells before the application of electric pulses can cause a significant increase in electrofusion efficiency. First, the amplitudes of the electric field were determined spectrofluorometrically, where sufficient permeabilization in hypotonic buffer occurred for B16-F1 and CHO cells. In further electrofusion experiments 14 +/- 4% of fused cells for B16-F1 and 6 +/- 1% for CHO was achieved. These electrofusion efficiencies, determined by double staining and fluorescence microcopy, are comparable to those of other published studies. It was also confirmed that successful electroporation does not necessarily guarantee high electrofusion efficiency due to biological factors involved in the electrofusion process. Furthermore, not only the extension of electrofusion but also cell survival depends on the cell line used. Further studies are needed to improve overall cell survival after electroporation in hypotonic buffer, which was significantly reduced, especially for B16-F1 cells. Another contribution of this report is the description of a simple modification of the adherence method for formation of spontaneous cell contact, while cells preserve their spherical shape.
机译:物理接触中细胞的有效电穿孔诱导细胞融合,该过程称为电融合。已经表明,在施加电脉冲之前对细胞进行适当的低渗处理会导致电融合效率的显着提高。首先,通过荧光光谱法确定电场强度,对于B16-F1和CHO细胞,低渗缓冲液中有足够的通透性。在进一步的电融合实验中,B16-F1融合细胞达到14 +/- 4%,CHO融合细胞达到6 +/- 1%。通过双重染色和荧光显微镜确定的这些电融合效率与其他已发表的研究相当。还证实了由于电融合过程中涉及的生物学因素,成功的电穿孔并不一定保证高电融合效率。此外,不仅电融合的延长,而且细胞存活率也取决于所使用的细胞系。需要进一步研究以改善在低渗缓冲液中进行电穿孔后的总体细胞存活率,尤其是对于B16-F1细胞,这种情况已大大降低。该报告的另一个贡献是描述了对粘附方法的简单修改,该粘附方法用于形成自发细胞接触,同时细胞保持其球形。

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