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Morphological Change of Fibroblast Cells on Titanium and Platinum Cultured at Anodic and Cathodic Potentials

机译:阳极和阴极电位培养的钛和铂上成纤维细胞的形态变化

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To understand cellular response against applied potential on different electrode materials, cell morphology and cell coverage of murine fibroblast L929 cultured on Ti and Pt electrodes were examined. Anodic and cathodic potentials were applied on Ti and Pt using a potentiostat. At the anodic potentials of 800 and 950 mV vs. Ag/AgCl, no cells kept a normal shape on both Ti and Pt. At the cathodic potential of - 350 mV, the cells on Ti were normally extended; whereas some of the cells on Pt were aggregated or round. At -1000 mV, the cells had spherical shape on Ti, while the Pt surface was covered by white precipitates with no cell remained. The change in cell morphology and the decrease in coverage at anodic potentials were significantly larger than those at the cathodic potentials. The morphological change of L929 on Ti was rather smaller than that on Pt at the same potentials, which is probably because the electric filed around the cells on Ti is smaller than that on Pt owing to the surface oxide film on Ti. These facts indicate that the cell response to the applied potential depends on the azimuth of electric field and electrode materials.
机译:为了了解细胞对施加在不同电极材料上的电势的响应,研究了在Ti和Pt电极上培养的鼠成纤维细胞L929的细胞形​​态和细胞覆盖率。使用恒电位仪将阳极和阴极电势施加到Ti和Pt上。在相对于Ag / AgCl的800和950 mV的阳极电位下,Ti和Pt上都没有细胞保持正常形状。在阴极电位-350 mV时,Ti上的细胞通常会扩展;而Pt上的某些细胞聚集或呈圆形。在-1000 mV时,电池在Ti上呈球形,而Pt表面被白色沉淀物覆盖,没有电池残留。在阳极电势下,细胞形态的变化和覆盖率的降低明显大于在阴极电势下的变化。在相同电势下,Ti上L929的形貌变化要比Pt上的小得多,这可能是由于Ti上的表面氧化膜使Ti上的电池周围的电场小于Pt上的。这些事实表明,电池对施加电势的响应取决于电场和电极材料的方位角。

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