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Carbon nanoelectrodes for single-cell probing

机译:用于单细胞探测的碳纳米电极

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摘要

Carbon nanoelectrodes with tip diameters ranging from tens to hundreds of nanometers are fabricated by pyrolitic deposition of carbon films along the entire inner surfaces of pulled-glass pipettes. The pulled end of each glass pipette is then etched to expose a desired length (typically, a few micrometers) of carbon pipe. The carbon film provides an electrically conductive path from the nanoscopic carbon tip to the distal, macroscopic end of the pipette, bridging between the nanoscale tip and the macroscale handle, without a need for assembly. We used our nanoelectrodes to penetrate into individual cells and cell nuclei and measured the variations in the electrode impedance upon cell and nucleus penetration as well as the electrode impedance as a function of cell penetration depth. Theoretical predictions based on a simple circuit model were in good agreement with experimental data.
机译:通过沿拉制玻璃移液器的整个内表面热解沉积碳膜来制造尖端直径范围为数十至数百纳米的碳纳米电极。然后蚀刻每个玻璃移液管的拉出端,以露出所需长度的碳管(通常为几微米)。碳膜提供了从纳米级碳尖端到移液器的远端,宏观末端的导电路径,桥接在纳米级尖端和宏观级手柄之间,无需组装。我们使用纳米电极渗透到单个细胞和细胞核中,并测量了细胞和细胞核渗透后电极阻抗的变化以及电极阻抗随细胞渗透深度的变化。基于简单电路模型的理论预测与实验数据非常吻合。

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