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FROG EGG-Array device integrated with fluidic channel and microelectrodes for chemical sensing

机译:集成了流体通道和微电极的FROG EGG阵列设备用于化学传感

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This paper describes a membrane protein-based chemical sensor that is consisted of fluidic channels and cells (Xenopus laevis oocytes) expressing chemical receptors. The fluidic device has Si-based microfabricated electrodes to measure the Xenopus oocyte's response to chemicals using two-electrode voltage clamping. The fluidic device was fabricated by combining fluidic channel made of acrylic resin and the electrode substrate. After the cell installing, the fluidic device can be separated to each fluidic channel that can measure an individual oocyte membrane potential change. We succeeded to array each oocyte in the device and to detect an individual Xenopus oocyte's responses to chemical stimulus.
机译:本文介绍了一种基于膜蛋白的化学传感器,该传感器由表达化学受体的流体通道和细胞(非洲爪蟾卵母细胞)组成。该流体装置具有基于Si的微型电极,可使用两电极电压钳位来测量非洲爪蟾卵母细胞对化学物质的响应。通过组合丙烯酸树脂制成的流体通道和电极基板来制造流体装置。细胞安装后,可以将流体装置分离到每个可以测量单个卵母细胞膜电位变化的流体通道。我们成功地排列了设备中的每个卵母细胞,并检测了单个非洲爪蟾卵母细胞对化学刺激的反应。

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