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An in-depth analysis of electric cell-substrate impedance sensing to study the attachment and spreading mammalian cells

机译:深入分析电-细胞-基质阻抗感应,研究哺乳动物细胞的附着和扩散

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摘要

The attachment and spreading of fibroblast cells on a gold surface coated with fibronectin or ovalbumin were studied by a modified electric cell-substrate impedance sensor. In this system, cells were cultured in a well, equipped with a detecting gold electrode (surface area of 0.057 mm(2)) and a gold counter electrode (18 mm(2)). Based on a comprehensive theoretical framework, the impedance of the electrode-electrolyte interface and a cell layer was precisely obtained for frequencies ranging from I to 10 kHz. Surface concentrations of the protein adsorbed on the gold surface were determined by a surface plasmon resonance biosensor. The resistance change of the electrode-electrolyte interface at 4 kHz increased linearly with the number of fibroblast cells attached on the detecting electrode. The slope of the linear relationship appeared to depend on the type of coating protein. As the surface area occupied by the cells was also proportional to the cell number, the resistance change was in turn proportional to the area covered by the cells. [References: 18]
机译:用改良的细胞-基底阻抗传感器研究了成纤维细胞在涂有纤连蛋白或卵清蛋白的金表面上的附着和扩散。在该系统中,将细胞培养在配备有检测金电极(表面积为0.057 mm(2))和金反电极(18 mm(2))的孔中。基于全面的理论框架,可以精确地获得频率范围为1至10 kHz的电极-电解质界面和电池层的阻抗。通过表面等离子体共振生物传感器确定吸附在金表面上的蛋白质的表面浓度。电极-电解质界面在4 kHz处的电阻变化随附着在检测电极上的成纤维细胞数量的增加而线性增加。线性关系的斜率似乎取决于包被蛋白的类型。由于电池所占据的表面积也与电池数量成正比,因此电阻变化又与电池所覆盖的面积成正比。 [参考:18]

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