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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Recording electric potentials from single adherent cells with 3D microelectrode arrays after local electroporation
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Recording electric potentials from single adherent cells with 3D microelectrode arrays after local electroporation

机译:局部电穿孔后用3D微电极阵列记录单个贴壁细胞的电势

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摘要

This short communication reports on the innovative method of the local micro-invasive needle electroporation (LOMINE) of single adherent cells. The investigation of cellular reactions in living cell cultures represents a fundamental method, e.g. for drug development and environmental monitoring. Existing classical methods for intracellular measurements using, e.g. patch clamp techniques are time-consuming and complex. Present patch-on-chip systems are limited to the investigation of single cells in suspension. Nevertheless, the most part of the cells of the human body is adherently growing. Therefore, we develop a new chip system for the growth of adherent cells with 64 micro-structured needle electrodes as well as 128 dielectrophoretic electrodes, located within a measuring area of 1mm~2. With this analytical chip, the intracellular investigation of electro-chemical changes and processes in adherently growing cells will become possible in the near future. Here, we present first intracellular measurements with this chip system.
机译:这段简短的交流报道了单粘附细胞局部微创针电穿孔(LOMINE)的创新方法。对活细胞培养物中细胞反应的研究代表了一种基本方法,例如用于药物开发和环境监测。现有经典方法用于细胞内测量,例如使用膜片钳技术既费时又复杂。当前的片上贴片系统仅限于研究悬浮中的单细胞。尽管如此,人体大部分细胞仍在黏附生长。因此,我们开发了一种用于贴壁细胞生长的新芯片系统,该芯片系统具有64个微结构的针状电极以及128个介电泳电极,位于1mm〜2的测量区域内。有了这种分析芯片,在不久的将来,细胞内对粘附生长的细胞中的电化学变化和过程的研究将成为可能。在这里,我们介绍了该芯片系统的首次细胞内测量。

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