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首页> 外文期刊>ACS nano >Interfacing Electrogenic Cells with 3D Nanoelectrodes: Position, Shape, and Size Matter
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Interfacing Electrogenic Cells with 3D Nanoelectrodes: Position, Shape, and Size Matter

机译:与3D纳米电极对接的电生细胞:位置,形状和大小很重要

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摘要

An in-depth understanding of the interface between cells and nanostructures is one of the key challenges for coupling electrically excitable cells and electronic devices. Recently, various 3D nanostructures have been introduced to stimulate and record electrical signals emanating from inside of the cell. Even though such approaches are highly sensitive and scalable, it remains an open question how cells couple to 3D structures, in particular how the engulfment-like processes of nanostructures work. Here, we present a profound study of the cell interface with two widely used nanostructure types, cylindrical pillars with and without a cap. While basic functionality was shown for these approaches before, a systematic investigation linking experimental data with membrane properties was not presented so far. The combination of electron microscopy investigations with a theoretical membrane deformation model allows us to predict the optimal shape and dimensions of 3D nanostructures for cell-chip coupling.
机译:深入理解电池和纳米结构之间的界面是耦合电激发性电池和电子设备的关键挑战之一。最近,已经引入了各种3D纳米结构来刺激和记录从细胞内部发出的电信号。即使这样的方法非常灵敏且可扩展,但仍然存在一个悬而未决的问题,即细胞如何与3D结构耦合,尤其是类似纳米结构的吞噬过程。在这里,我们对具有两种广泛使用的纳米结构类型(带盖和不带盖的圆柱柱)的细胞界面进行了深入的研究。尽管以前已经显示了这些方法的基本功能,但到目前为止,尚未提供将实验数据与膜性能联系起来的系统研究。电子显微镜研究与理论膜变形模型的结合使我们能够预测3D纳米结构的最佳形状和尺寸,以实现细胞-芯片偶联。

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