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Iridium Oxide Nanotube Electrodes for Highly Sensitive and Prolonged Intracellular Measurement of Action Potentials

机译:氧化铱纳米管电极用于动作电位的高灵敏度和长时间细胞内测量

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摘要

Intracellular recording of action potentials is important to understand electrically-excitable cells. Recently, vertical nanoelectrodes have been developed to achieve highly sensitive, minimally invasive, and large scale intracellular recording. It has been demonstrated that the vertical geometry is crucial for the enhanced signal detection. Here we develop nanoelectrodes made up of nanotubes of iridium oxide. When cardiomyocytes are cultured upon those nanotubes, the cell membrane not only wraps around the vertical tubes but also protrudes deep into the hollow center. We show that this geometry enhances cell-electrode coupling and results in measuring much larger intracellular action potentials. The nanotube electrodes afford much longer intracellular access and are minimally invasive, making it possible to achieve stable recording up to an hour in a single session and more than 8 days of consecutive daily recording. This study suggests that the electrode performance can be significantly improved by optimizing the electrode geometry.
机译:细胞内动作电位的记录对于理解电激发细胞很重要。近来,已经开发出垂直纳米电极以实现高灵敏度,微创和大规模细胞内记录。已经证明,垂直几何形状对于增强信号检测至关重要。在这里,我们开发由氧化铱纳米管组成的纳米电极。当在这些纳米管上培养心肌细胞时,细胞膜不仅包裹在垂直管周围,而且还深深地伸入空心中心。我们表明,这种几何形状增强了细胞电极耦合,并导致测量更大的细胞内动作电位。纳米管电极提供了更长的细胞内进入时间,并且具有最小的侵入性,从而有可能在单个疗程中长达一个小时实现稳定的记录,并连续8天以上进行日常记录。这项研究表明,通过优化电极几何形状可以显着改善电极性能。

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