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Real-time Detection of Neurotransmitter using Enzyme-immobilized CNT Network Transistors in 11 Vessel Occlusion Rat Model

机译:使用酶固定的CNT网络晶体管在11血管闭塞大鼠模型中实时检测神经递质

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Glutamate is the principal excitatory neurotransmitter in the brain, and its excessive release plays a key role in neuronal death associated with a wide range of neuronal disorders We immobilized glutamate oxidase (GLOD) on carbon nanotube (CNT) network junctions by non-covalent functionalized method to detect L-glutamate. After immobilizing GLOD on CNT network, the excess reactive groups of linker molecule remaining on the CNT surface was deactivated and blocked by ethanolamine The real time electronic response of CNT network transistors immobilized by GLOD was conducted with glutamate standard solution in vitro For real-time in-vivo glutamate measurements, we prepared the 11 vessel occlusion rat model. The ultrahigh sensitivity, selectivity, and fast response time of GLOD-immobilized CNT network transistor could provide great potential for real time electronic detection in the extracellular glutamate level of the brain.
机译:谷氨酸是大脑中的主要兴奋性神经递质,其过度释放在与各种神经元疾病的神经元死亡中发挥着关键作用,我们通过非共价官能化方法将谷氨酸氧化酶(Glod)固定在碳纳米管(CNT)网络连接物中的各种神经元疾病相关检测L-谷氨酸。在固定在CNT网络上的GLOD之后,通过乙醇胺停用并阻断在CNT表面上残留在CNT表面上的过量反应性基团,通过在体外用谷氨酸标准溶液进行CNT网络晶体管的实时电子响应,在体外进行谷氨酸标准溶液进行实时进行。 -Vivo谷氨酸测量,我们制备了11个血管闭塞大鼠模型。 GLOD固定的CNT网络晶体管的超高敏感性,选择性和快速响应时间可以提供脑细胞外谷氨酸水平的实时电子检测的巨大潜力。

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