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Cell membrane conformation at vertical nanowire array interface revealed by fluorescence imaging

机译:荧光成像显示垂直纳米线阵列界面的细胞膜构象

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The perspectives offered by vertical arrays of nanowires for biosensing applications in living cells depend on the access of individual nanowires to the cell interior. Recent results on electrical access and molecular delivery suggest that direct access is not always obtained. Here, we present a generic approach to directly visualize the membrane conformation of living cells interfaced with nanowire arrays, with single nanowire resolution. The method combines confocal z-stack imaging with an optimized cell membrane labelling strategy which was applied to HEK293 cells interfaced with 2-11μm long and 3-7μm spaced nanowires with various surface coatings (bare, aminosilane-coated or polyethyleneimine-coated indium arsenide). We demonstrate that, for all commonly used nanowire lengths, spacings and surface coatings, nanowires generally remain enclosed in a membrane compartment, and are thereby not in direct contact with the cell interior.
机译:垂直线纳米线在活细胞中的生物传感应用所提供的观点取决于单个纳米线进入细胞内部的途径。关于电通路和分子递送的最新结果表明,并不总是获得直接通路。在这里,我们提出了一种通用的方法来直接可视化与纳米线阵列接口的活细胞的膜构象,并具有单个纳米线分辨率。该方法将共聚焦z堆栈成像与优化的细胞膜标记策略相结合,该策略已应用于与2-11μm长和3-7μm间隔的纳米线交界的HEK293细胞,这些纳米线具有各种表面涂层(裸露,氨基硅烷涂层或聚乙烯亚胺涂层的砷化铟) 。我们证明,对于所有常用的纳米线长度,间距和表面涂层,纳米线通常保持封闭在膜室中,因此不与细胞内部直接接触。

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