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Nanocarbon-Coated Porous Anodic Alumina for Bionic Devices

机译:用于仿生设备的纳米碳涂层多孔阳极氧化铝

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摘要

A highly-stable and biocompatible nanoporous electrode is demonstrated herein. The electrode is based on a porous anodic alumina which is conformally coated with an ultra-thin layer of diamond-like carbon. The nanocarbon coating plays an essential role for the chemical stability and biocompatibility of the electrodes; thus, the coated electrodes are ideally suited for biomedical applications. The corrosion resistance of the proposed electrodes was tested under extreme chemical conditions, such as in boiling acidic/alkali environments. The nanostructured morphology and the surface chemistry of the electrodes were maintained after wet/dry chemical corrosion tests. The non-cytotoxicity of the electrodes was tested by standard toxicity tests using mouse fibroblasts and cortical neurons. Furthermore, the cell–electrode interaction of cortical neurons with nanocarbon coated nanoporous anodic alumina was studied in vitro. Cortical neurons were found to attach and spread to the nanocarbon coated electrodes without using additional biomolecules, whilst no cell attachment was observed on the surface of the bare anodic alumina. Neurite growth appeared to be sensitive to nanotopographical features of the electrodes. The proposed electrodes show a great promise for practical applications such as retinal prostheses and bionic implants in general.
机译:本文证明了高度稳定和生物相容的纳米多孔电极。该电极基于多孔阳极氧化铝,该多孔阳极氧化铝共形涂覆有类金刚石碳的超薄层。纳米碳涂层对于电极的化学稳定性和生物相容性起着至关重要的作用。因此,带涂层的电极非常适合生物医学应用。建议的电极的耐腐蚀性在极端化学条件下(例如在沸腾的酸性/碱性环境中)进行了测试。湿法/干法化学腐蚀测试后,电极的纳米结构和表面化学性质得以保持。电极的非细胞毒性通过使用小鼠成纤维细胞和皮层神经元的标准毒性测试进行了测试。此外,体外研究了皮层神经元与纳米碳涂层的纳米多孔阳极氧化铝的细胞-电极相互作用。发现皮层神经元在不使用其他生物分子的情况下附着并扩散到纳米碳涂层的电极上,而在裸露的阳极氧化铝的表面上未观察到细胞附着。神经突生长似乎对电极的纳米形貌特征敏感。所提出的电极对于诸如视网膜假体和仿生植入物的实际应用显示出巨大的希望。

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