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Anodic Aluminum Oxide (AAO) Membranes for Neurite Outgrowth

机译:阳极氧化铝(AAO)神经突缺点的膜

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Anodic aluminum oxide (AAO) membranes were fabricated in a mild two-step anodization procedure. The voltage was varied during both anodization steps to control the pore size and morphology of the AAO membranes. Pore sizes ranged from 34 nm to 117 nm. Characterization of the pore structure was performed by scanning electron microscopy (SEM). To assess the potential of the AAO membranes as a neuronal differentiation platform, C17.2 neural stem cells (NSCs), an immortalized and multipotent cell line, were used. The NSCs were forced to differentiate via serum-withdrawal. Cellular growth was characterized by immunocytochemistry (ICC) and SEM. ImageJ software was used to obtain phenotypic cell counts and neurite outgrowth lengths. Results indicate a highly tunable correlation between AAO nanopore sizes and differentiated cell populations. By selecting AAO membranes with specific pore size ranges, control of neuronal network density and neurite outgrowth length was achieved.
机译:在温和的两步阳极氧化过程中制造阳极氧化铝(AAO)膜。在阳极氧化步骤期间,该电压在阳极氧化步骤中进行变化,以控制AaO膜的孔径和形态。孔径范围为34 nm至117 nm。通过扫描电子显微镜(SEM)进行孔结构的表征。为了评估AAO膜作为神经元分化平台的潜力,使用C17.2神经干细胞(NSCs),永生化和多电纤维细胞系。 NSCs被迫通过血清戒断来区分。细胞生长的特征在于免疫细胞化学(ICC)和SEM。 imagej软件用于获得表型细胞计数和神经沸石的过度长度。结果表明AAO纳米孔尺寸和分化细胞群之间的高度可调谐相关性。通过选择具有特异性孔径范围的AAO膜,实现了神经元网络密度和神经突生长长度的控制。

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