Centre for Research in Medical Devices (CURAM), Galway Biosciences Research Building, 118 Corrib Village, Newcastle, Galway, Ireland. Department of Physical Chemistry and Technology of Polymers, Silesian University of Technology, M.Strzody 9, 44-100 Gliwice, Poland.
Biomed Mater. 2018 Jun 4;13(5):054102. doi: 10.1088/1748-605X/aabced.
Electrically conducting polymer formulations have emerged as promising approaches for the development of interfaces and scaffolds in neural engineering, facilitating the development of physicochemically modified constructs capable of cell stimulation through electrical and ionic charge transfer. In particular, topographically functionalized or neuromorphic materials are able to guide the growth of axons and promote enhanced interfacing with neuroelectrodes in vitro. In this study, we present a novel method for the formation of conducting polymer/gold assemblies via a combinational sputter and spin coating technique. The resulting multilayered PEDOT/Au substrates possessed enhanced electrochemical properties as a function of the number of deposited organic/inorganic layers. It was observed that through subsequent electrochemical conditioning it was possible to form neuromorphic fractal-like assemblies of gold particles, which significantly impacted on the electrochemical characteristics of the PEDOT/Au films. PEDOT/Au assemblies were observed to possess unique topographical features, advantageous charge storage capacity (34.9 ± 2.6 mC cm) and low electrical impedance (30 ± 2 Ω at 1 kHz). Furthermore, PEDOT/Au assemblies were observed to facilitate the outgrowth of neurites in a mixed ventral mesencephalon cell population and promotean increase in the neurons/astrocytes ratio relative to all experimental groups, indicating PEDOT/Au biomimetic neuromorphic assemblies as promising materials in engineering electrically conductive neural interface systems.
导电聚合物配方已成为神经工程中界面和支架开发的有前途的方法,通过电和离子电荷转移促进了能够通过物理化学修饰的构建体的开发,从而实现细胞刺激。特别是,形貌功能化或类神经材料能够引导轴突的生长,并促进体外与神经电极的增强接口。在这项研究中,我们提出了一种通过组合溅射和旋涂技术形成导电聚合物/金组装体的新方法。所得的多层 PEDOT/Au 基底具有增强的电化学性能,这是沉积的有机/无机层数量的函数。观察到,通过随后的电化学调节,可以形成金颗粒的类神经形态分形组装体,这对 PEDOT/Au 薄膜的电化学特性有重大影响。观察到 PEDOT/Au 组件具有独特的形貌特征、有利的电荷存储容量(34.9 ± 2.6 mC cm)和低的电阻抗(在 1 kHz 时为 30 ± 2 Ω)。此外,观察到 PEDOT/Au 组件有利于混合腹侧中脑细胞群中神经突的生长,并相对于所有实验组增加神经元/星形胶质细胞的比例,表明 PEDOT/Au 仿生类神经形态组装体作为在工程电导电神经接口系统中很有前途的材料。