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Application of a Thin-Film Transistor Array for Cellular-Resolution Electrophysiology and Electrochemistry

机译:薄膜晶体管阵列在细胞分辨率电生理学和电化学中的应用

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The constant development and improvement of microelectromechanical systems (MEMS) have been given a great opportunity to develop new reliable microsystems devices for biomedical research. This article presents a locally addressable 2-D arrayed indium-tin oxide microelectrode platform with integrated thin-film transistors (TFTs) for biological and chemical sensing. Microelectrode arrays (MEAs) using TFT have the advantage of being transparent with a high density of microelectrodes on a large surface. In vitro 2-D electrical measurements on 28 parallel-connected lines selected from a 22 500 MEA were successfully performed with heart cells for the first time. Observation of cell contraction was performed simultaneously with an inverted microscope. Voltammetry and amperometry measurements were also demonstrated using the transparent microelectrodes as working electrodes and an integrated Ag/AgCl reference electrode. Due to its unique features, we believe that the TFT platform can provide more understanding of the key communication between heart cells, and large-scale cardiovascular and nervous systems. As a result, the platform offers unique access to versatile lab-on-a-chip devices that integrate many measurement techniques on one chip for the study of cell cultures, tissues, and organoids.
机译:微机电系统(MEMS)的持续发展和改进已经为开发用于生物医学研究的新可靠的微系统设备提供了很大的机会。本文介绍了具有用于生物和化学感测的集成薄膜晶体管(TFT)的本地可寻址的2-D阵列氧化铟锡微电极平台。使用TFT的微电极阵列(MEA)具有在大表面上具有高密度的透明的优点。在28个双平行连接线上的体外2-D电测量,首次使用心细胞成功使用心脏细胞进行成功进行。用倒置显微镜同时进行细胞收缩的观察。还使用透明微电极作为工作电极和集成的Ag / AgCl参考电极来证明伏安法和安培测量。由于其独特的特征,我们认为TFT平台可以更多地了解心脏细胞和大规模心血管和神经系统之间的关键通信。因此,该平台提供了独特的访问,可以访问多功能的实验室设备,该装置集成了一芯片上的许多测量技术,用于研究细胞培养,组织和有机体。

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