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Quantitative Control of Neuron Adhesion at a Neural Interface Using a Conducting Polymer Composite with Low Electrical Impedance

机译:使用低电阻的导电聚合物复合材料定量控制神经元界面神经元的粘附

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Tailoring cell response on an electrode surface is essential in the application of neural interfaces. In this paper, a method of controlling neuron adhesion on the surface of an electrode was demonstrated using a conducting polymer composite as an electrode coating. The electrodeposited coating was functionalized further with biomolecules-of-interest (BOI), with their surface concentration controlled via repetition of carbodiimide chemistry. The result was an electrode surface that promoted localized adhesion of primary neurons, the density of which could be controlled quantitatively via changes in the number of layers of BOI added. Important to neural interfaces, it was found that additional layers of BOI caused an insignificant increase in the electrical impedance, especially when compared to the large drop in impedance upon coating of the electrode with the conducting polymer composite.
机译:调整电极表面上的细胞反应对于神经接口的应用至关重要。在本文中,使用导电聚合物复合材料作为电极涂层,证明了一种控制神经元在电极表面粘附的方法。电沉积涂层用感兴趣的生物分子(BOI)进一步功能化,其表面浓度通过碳二亚胺化学的重复控制。结果是电极表面促进了初级神经元的局部粘附,其密度可通过改变所加入的BOI层数来定量控制。对于神经接口很重要,已发现额外的BOI层引起电阻抗的增加不明显,尤其是与电极上涂有导电聚合物复合材料时的阻抗大幅下降相比。

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