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Carbon nanotube-coated silicone as a flexible and electrically conductive biomedical material

机译:碳纳米管涂层有机硅作为柔性导电生物医学材料

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摘要

Artificial cell scaffolds that support cell adhesion, growth, and organization need to be fabricated for various purposes. Recently, there have been increasing reports of cell patterning using electrical fields. We fabricated scaffolds consisting of silicone sheets coated with single-walled (SW) or multi-walled (MW) carbon nanotubes (CNTs) and evaluated their electrical properties and biocompatibility. We also performed cell alignment with dielectrophoresis using CNT-coated sheets as electrodes. Silicone coated with 10 μg/cm2 SWCNTs exhibited the least sheet resistance (0.8 kΩ/sq); its conductivity was maintained even after 100 stretching cycles. CNT coating also improved cell adhesion and proliferation. When an electric field was applied to the cell suspension introduced on the CNT-coated scaffold, the cells became aligned in a pearl-chain pattern. These results indicate that CNT coating not only provides electro-conductivity but also promotes cell adhesion to the silicone scaffold: cells seeded on the scaffold can be organized using electricity. These findings demonstrate that CNT-coated silicone can be useful as a biocompatible scaffold.
机译:需要出于各种目的制造支持细胞粘附,生长和组织的人造细胞支架。近来,越来越多的报告使用电场进行细胞图案化。我们制造了由涂有单壁(SW)或多壁(MW)碳纳米管(CNT)的有机硅板组成的支架,并评估了它们的电性能和生物相容性。我们还使用涂有CNT的薄板作为电极,通过介电电泳进行细胞比对。涂有10μg/ cm2 SWCNT的有机硅显示出最小的薄层电阻(0.8kΩ/ sq);即使经过100次拉伸,其电导率仍保持不变。 CNT涂层还改善了细胞粘附和增殖。当将电场施加到引入CNT涂层支架的细胞悬液上时,细胞以珍珠链状排列。这些结果表明,CNT涂层不仅提供导电性,而且还促进了细胞与硅氧烷支架的粘附:可以使用电来组织接种在支架上的细胞。这些发现表明,CNT涂覆的硅氧烷可以用作生物相容性支架。

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