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NANOWIRE FIELD-EFFECT TRANSISTOR BIOSENSOR WITH IMPROVED SENSITIVITY

机译:灵敏度提高的NANOWIRE场效应晶体管生物传感器

摘要

The present invention is directed to a multiwire nanowire field effect transistor (nwFET) device for the measurement. The device includes a sensing nanowire having a first end and a second end and a nanowire FET having a first end and a second end, wherein the first end of the sensing nanowire is connected to the nanowire FET to form a node. Additionally, the first end of the nanowire FET is connected to a source electrode, the second end of the nanowire FET is connected to a drain electrode, and the second end of the sensing nanowire is connected to a base electrode. The sensing nanowire is derivatized with a plurality of immobilized capture probes that are specific for a target(s) of interest. The device is used to detect biomolecules or to detect the change in the ionic environment of a sample. In a further embodiment, the sensing nanowire is derivatized with amino, carboxyl or hydroxyl groups. Upon a change in ionic environment, or binding of a molecule to the sensing nanowire, the sensing nanowire current (IB) fluctuates. This fluctuation is amplified and readout as the nanowire FET drain current (ID). Accordingly, the present invention provides for label-free detection of biomolecules and may find use as a point-of-care diagnostic device.
机译:本发明涉及用于测量的多线纳米线场效应晶体管(nwFET)装置。所述装置包括具有第一端和第二端的感测纳米线以及具有第一端和第二端的纳米线FET,其中所述感测纳米线的第一端连接至所述纳米线FET以形成节点。另外,纳米线FET的第一端连接到源电极,纳米线FET的第二端连接到漏电极,并且感测纳米线的第二端连接到基电极。感测纳米线被多个固定的捕获探针衍生,这些捕获探针对目标靶标具有特异性。该设备用于检测生物分子或检测样品离子环境的变化。在另一个实施方案中,感测纳米线被氨基,羧基或羟基衍生化。在离子环境发生变化或分子与传感纳米线结合后,传感纳米线电流(IB)发生波动。此波动被放大并作为纳米线FET漏极电流(ID)读出。因此,本发明提供了无标记的生物分子检测,并且可以用作即时诊断设备。

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