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光学透明电极表面培养的活HeLa细胞增殖的电学效应。

Electrical effects on the proliferation of living HeLa cells cultured on optically transparent electrode surface.

作者信息

Yaoita M, Ikariyama Y, Aizawa M

机构信息

Department of Bioengineering, Tokyo Institute of Technology, Japan.

出版信息

J Biotechnol. 1990 Jun;14(3-4):321-32. doi: 10.1016/0168-1656(90)90116-s.

Abstract

Low d.c. potential application induced changes of cellular morphology and growth of living cells on a potential-controlled electrode. At a potential range higher than +0.7 V (vs. Ag/AgCl), serious electric effects on cell viability, membrane permeability, and cytoskeletal morphology of HeLa cells were observed. On the other hand, at lower than +0.5 V no effect was observed. At the boundary potential range between +0.5 V to +0.7 V, where HeLa cells were cultured on the potential-controlled optically transparent In2O3 electrode (OTE) surface, intriguing effects on HeLa cells appeared. At this potential range, where HeLa cells cultured on a potential-applied OTE, all the cells were alive accompanying morphological change. The morphology of HeLa cells returned to their normal spindle shape, when potential application to the electrode was cut off. At a potential of +0.65 V, cell proliferation ratio of cultured cell on an electrode was about one-fifth of that on a non-controlled electrode. These results suggest that low d.c. electrical effects induce significant change in cellular morphology and function.

摘要

低直流电势应用会引起电位控制电极上活细胞的细胞形态和生长变化。在高于 +0.7 V(相对于 Ag/AgCl)的电位范围内,观察到对 HeLa 细胞的细胞活力、膜通透性和细胞骨架形态有严重的电效应。另一方面,在低于 +0.5 V 时未观察到影响。在 +0.5 V 至 +0.7 V 的边界电位范围内,当 HeLa 细胞在电位控制的光学透明 In2O3 电极(OTE)表面培养时,对 HeLa 细胞出现了有趣的影响。在此电位范围内,当 HeLa 细胞在施加电位的 OTE 上培养时,所有细胞都存活并伴有形态变化。当切断电极的电位施加时,HeLa 细胞的形态恢复到其正常的纺锤形。在 +0.65 V 的电位下,电极上培养细胞的细胞增殖率约为非控制电极上的五分之一。这些结果表明,低直流电效应会引起细胞形态和功能的显著变化。

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