School of Laboratory Medicine, Hubei University of Chinese Medicine, 16 Huangjia Lake West Road, Wuhan, 430065, China.
Center for Clinical Laboratory, General Hospital of the Yangtze River Shipping, Wuhan Brain Hospital, Huiji Road, Wuhan, 430030, China.
Small. 2022 Dec;18(52):e2204142. doi: 10.1002/smll.202204142. Epub 2022 Nov 7.
Chemical communication via neurotransmitters is central to brain functions. Nevertheless, in vivo real-time monitoring of neurotransmitters released in the brain, especially the electrochemically inactive molecules, remains a great challenge. In this work, a novel needle field-effect transistor (FET) microsensor based on an acupuncture needle is proposed, which is demonstrated to be capable of real-time monitoring dopamine molecules as well as neuropeptide Y in vivo. The FET microstructure is fabricated by successively wrapping an insulating layer and a gold layer on the top of the needle, where the needle and the Au served as the source and drain, respectively. After assembling reduced graphene oxide (RGO) between the source and drain electrodes, the specific aptamer is immobilized on the RGO, making this needle-FET biosensor highly selective and sensitive to real-time monitor neurotransmitters released from rat brain, even in a Parkinson's diseases model. Furthermore, the needle-FET biosensor is applied to detect a variety of targets including hormones, proteins, and nucleic acid. By constructing a FET sensing interface on an acupuncture needle and implanting the sensor in a rat's brain for in vivo detection, this work provides a new sight in the FET domain and further expands the species of real-time in vivo detection.
化学通讯通过神经递质是大脑功能的核心。然而,在体内实时监测神经递质的释放,尤其是电化学惰性分子,仍然是一个巨大的挑战。在这项工作中,提出了一种基于针灸针的新型针场效应晶体管(FET)微传感器,该传感器被证明能够实时监测多巴胺分子以及体内的神经肽 Y。FET 微结构是通过在针的顶部依次包裹绝缘层和金层来制造的,其中针和 Au 分别用作源极和漏极。在源极和漏极电极之间组装还原氧化石墨烯(RGO)后,将特定的适体固定在 RGO 上,使这种针 FET 生物传感器对大鼠大脑释放的神经递质具有高度选择性和敏感性,即使在帕金森病模型中也是如此。此外,该针 FET 生物传感器还可用于检测各种目标,包括激素、蛋白质和核酸。通过在针灸针上构建 FET 传感界面并将传感器植入大鼠大脑中进行体内检测,这项工作为 FET 领域提供了新的视角,并进一步扩展了实时体内检测的种类。