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Fabrication of gold nanodot arrays on a transparent substrate as a nanobioplatform for label-free visualization of living cells

机译:在透明基板上制造金纳米点阵列作为纳米生物平台,实现无标记的活细胞可视化

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Two-dimensional gold (Au) nanodot arrays on a transparent substrate were fabricated for imaging of living cells. A nanoporous alumina mask with large-area coverage capability was prepared by a two-step chemical wet etching process after a second anodization. Highly ordered Au nanodot arrays were formed on indium-tin-oxide (ITO) glass using very thin nanoporous alumina of approximately 200nm thickness as an evaporation mask. The large-area Au nanodot arrays on ITO glass were modified with RGD peptide (arginine; glycine; aspartic acid) containing a cysteine (Cys) residue and then used to immobilize human cancer HeLa cells, the morphology of which was observed by confocal microscopy. The confocal micrographs of living HeLa cells on Au nanodot arrays revealed enhanced contrast and resolution, which enabled discernment of cytoplasmic organelles more clearly. These results suggest that two-dimensional Au nanodot arrays modified with RGD peptide on ITO glass have potential as a biocompatible nanobioplatform for the label-free visualization and adhesion of living cells.
机译:制作了透明基板上的二维金(Au)纳米点阵列,用于活细胞成像。在第二次阳极氧化之后,通过两步化学湿蚀刻工艺制备了具有大面积覆盖能力的纳米多孔氧化铝掩模。使用约200nm厚度的超薄纳米多孔氧化铝作为蒸发掩模,在氧化铟锡(ITO)玻璃上形成高度有序的Au纳米点阵列。 ITO玻璃上的大面积Au纳米点阵列用包含半胱氨酸(Cys)残基的RGD肽(精氨酸,甘氨酸,天冬氨酸)修饰,然后用于固定人癌HeLa细胞,通过共聚焦显微镜观察其形态。金纳米点阵列上活着的HeLa细胞的共聚焦显微照片显示增强的对比度和分辨率,这使细胞质细胞器的识别更加清晰。这些结果表明,在ITO玻璃上用RGD肽修饰的二维Au纳米点阵列具有作为生物相容性纳米生物平台的潜力,可用于无标记可视化和活细胞粘附。

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