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Quantification of nanowire penetration into living cells

机译:定量分析纳米线对活细胞的渗透

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High-aspect ratio nanostructures such as nanowires and nanotubes are a powerful new tool for accessing the cell interior for delivery and sensing. Controlling and optimizing cellular access is a critical challenge for this new technology, yet even the most basic aspect of this process, whether these structures directly penetrate the cell membrane, is still unknown. Here we report the first quantification of hollow nanowires-nanostraws-that directly penetrate the membrane by observing dynamic ion delivery from each 100-nm diameter nanostraw. We discover that penetration is a rare event: 7.1 +/- 2.7% of the nanostraws penetrate the cell to provide cytosolic access for an extended period for an average of 10.7 +/- 5.8 penetrations per cell. Using time-resolved delivery, the kinetics of the first penetration event are shown to be adhesion dependent and coincident with recruitment of focal adhesion-associated proteins. These measurements provide a quantitative basis for understanding nanowire-cell interactions, and a means for rapidly assessing membrane penetration.
机译:高纵横比的纳米结构(例如纳米线和纳米管)是用于进入细胞内部进行传递和传感的强大新工具。对于这种新技术而言,控制和优化细胞访问是一项严峻的挑战,但是,即使这些过程的最基本方面,即这些结构是否直接穿透细胞膜,仍然是未知的。在这里,我们报告了通过观察每个直径为100 nm的纳米吸管的动态离子传递而直接穿透膜的空心纳米线-Nanostraws的首次定量。我们发现渗透是一种罕见的事件:7.1 +/- 2.7%的纳米吸管渗透细胞以提供细胞质延长的访问时间,每个细胞平均渗透10.7 +/- 5.8。使用时间分辨的传递,第一次渗透事件的动力学被证明是粘附依赖性的,并且与局部粘附相关蛋白的募集相吻合。这些测量结果为了解纳米线与细胞之间的相互作用提供了定量基础,并为快速评估膜渗透性提供了一种手段。

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