首页> 外文会议>Proceedings of 2010 International Conference on Systems in Medicine and Biology >Simple cytosensor based electrical characterization of keratinocytes and fibroblasts with prime molecular expressions towards skin tissue engineering applications
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Simple cytosensor based electrical characterization of keratinocytes and fibroblasts with prime molecular expressions towards skin tissue engineering applications

机译:简单的基于细胞传感器的角质形成细胞和成纤维细胞的电学表征,具有针对皮肤组织工程应用的主要分子表达

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Investigation of electrical properties along with molecular expressions of the keratinocyte and fibroblast under different physiological conditions can provide insight into their functioning which can contribute significantly towards skin tissue engineering application. For electrical characterization, cell based biosensors are usually designed with photolithographically patterned electrodes which are of the dimensions of cells. This increases cost and complexity of the analysis. In this paper, we report electrical characterization of keratinocyte and fibroblast cells, cultured in DMEM-F12 and DMEM media with a low cost and sensitive macroporous silicon platform using simple electrode geometries for the first time. Impedance spectroscopy results show that, there is a distinct difference between the electrical properties like effective capacitance and resistance of HaCaT (keratinocyte) and 3T3 (fibroblast) cells in the frequency range from 100Hz to 1MHz. The keratinocyte cells are observed to possess lower impedance than the fibroblast cells. The differences in the electrical properties have been correlated with the immunocytochemically detected prime molecular expressions of these cells. This multimodal analysis will help in the estimation of the degree of normalcy of these cells through a less complex and low cost electrical route.
机译:在不同的生理条件下研究电特性以及角质形成细胞和成纤维细胞的分子表达,可以深入了解它们的功能,从而可以显着促进皮肤组织工程的应用。为了进行电表征,基于细胞的生物传感器通常被设计成具有光刻尺寸的电极,该电极具有细胞的尺寸。这增加了分析的成本和复杂性。在本文中,我们首次报道了角质形成细胞和成纤维细胞的电特性,这是首次在DMEM-F12和DMEM介质中以低成本和敏感的大孔硅平台,使用简单的电极几何结构进行培养。阻抗谱结果表明,在100Hz至1MHz的频率范围内,HaCaT(角质形成细胞)和3T3(成纤维细胞)细胞的电学性质(如有效电容和电阻)之间存在明显差异。观察到角质形成细胞比成纤维细胞具有更低的阻抗。电学性质的差异与这些细胞的免疫细胞化学检测的主要分子表达有关。这种多峰分析将有助于通过不太复杂且成本较低的电气路线估算这些电池的正常程度。

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