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Vertical nanowire probes for intracellular signaling of living cells

机译:垂直纳米线探针用于活细胞的细胞内信号传导

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摘要

The single living cell action potential was measured in an intracellular mode by using a vertical nanoelectrode. For intracellular interfacing, Si nanowires were vertically grown in a controlled manner, and optimum conditions, such as diameter, length, and nanowire density, were determined by culturing cells on the nanowires. Vertical nanowire probes were then fabricated with a complimentary metal-oxide-semiconductor (CMOS) process including sequential deposition of the passivation and electrode layers on the nanowires, and a subsequent partial etching process. The fabricated nanowire probes had an approximately 60-nm diameter and were intracellular. These probes interfaced with a GH3 cell and measured the spontaneous action potential. It successfully measured the action potential, which rapidly reached a steady state with average peak amplitude of approximately 10 mV, duration of approximately 140 ms, and period of 0.9 Hz.
机译:通过使用垂直纳米电极以细胞内模式测量单个活细胞动作电位。对于细胞内接口,Si纳米线以受控方式垂直生长,并且通过在纳米线上培养细胞来确定最佳条件,例如直径,长度和纳米线密度。然后用互补金属氧化物半导体(CMOS)工艺制造垂直纳米线探针,该工艺包括在纳米线上顺序沉积钝化层和电极层,以及随后的部分蚀刻工艺。所制造的纳米线探针的直径约为60 nm,并且在细胞内。这些探针与GH3细胞接触并测量了自发动作电位。它成功测量了动作电位,该电位迅速达到稳态,平均峰值幅度约为10mV,持续时间约为140ms,周期为0.9Hz。

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