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Electroactive Surfaces Based on Conducting Polymers for Controlling Cell Adhesion, Signaling, and Proliferation

机译:基于导电聚合物的电活性表面,用于控制细胞的粘附,信号传导和增殖

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摘要

We report on a variety of electroactive surfaces for the control of in vitro cell adhesion, proliferation, and stimulation. Planar cell culture substrates have been coated with the conducting polymer PEDOT and by switching the redox state, adhesion and proliferation of MDCK epithelial cells was controlled as well as stem cell seeding density. Electronically active 3D-scaffolds based on electrospun PET nano-fibers coated with PEDOT have been used as a substrate to culture SH-SY5Y neuroblastoma cells and to induce Ca2+ signaling. Finally, we report on micromechanical stimulation of cells using an electroactive topography surface based on micropattened polypyrrole.
机译:我们报告了用于控制体外细胞粘附,增殖和刺激的各种电活性表面。平面细胞培养基质已涂有导电聚合物PEDOT,并且通过切换氧化还原状态,可以控制MDCK上皮细胞的粘附和增殖以及干细胞接种密度。基于涂覆有PEDOT的静电纺PET纳米纤维的电子活性3D支架已用作培养SH-SY5Y神经母细胞瘤细胞并诱导Ca2 +信号转导的底物。最后,我们报道了基于微专利聚吡咯的电活性表面对细胞的微机械刺激。

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