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Transparent Biosensor with Micro Channel Array for Optical and Electrophysiological Cell Signal Detection

机译:具有微通道阵列的透明生物传感器,用于光学和电生理细胞信号检测

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This paper describes transparent biosensors to detect both optical and electrophysiological signals of luciferin-luciferase reaction. By using MEMS technologies, we have developed "Micro Channel Array (hereafter MCA)" integrated with suction holes and detecting electrodes for electrophysiological biosensors. Each detecting electrode is electrically isolated. Reliable clamping of a single cell at the detecting electrode is expected to improve the cellular selectivity and S/N ratio. The transparent biosensors in this paper are designed as a variation of the MCA. Luciferin-luciferase reaction generates optical and electrophysiological signals simultaneously against chemical stimulus. In this study, we employed Per1-luc slice having circadian rhythm as a typical example of cell having luciferin-luciferase reaction. Optical and electrophysiological signals of the Per1-luc slice could be successfully observed by developed transparent biosensors with MCA.
机译:本文描述了透明的生物传感器,以检测荧光素 - 荧光素酶反应的光学和电生理学信号。通过使用MEMS技术,我们开发了与吸入孔和检测电生理生物传感器的电极的“微通道阵列(下文MCA)”。每个检测电极电隔离。预期在检测电极处可靠钳位单个电池,以改善细胞选择性和S / N比。本文中的透明生物传感器被设计为MCA的变型。荧光素 - 荧光素酶反应同时产生光学和电生理信号反对化学刺激。在本研究中,我们使用具有昼夜节律的Per1-Luc切片作为具有荧光素 - 荧光素酶反应的细胞的典型实例。通过MCA开发的透明生物传感器可以成功地观察PER1-LUC切片的光学和电生理信号。

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