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Direct Electrochemical Detection of Glutamate Acetylcholine Choline and Adenosine Using Non-Enzymatic Electrodes

机译:使用非酶电极对谷氨酸乙酰胆碱胆碱和腺苷进行直接电化学检测

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摘要

Non-electroactive neurotransmitters such as glutamate, acetylcholine, choline, and adenosine play a critical role in proper activity of living organisms, particularly in the nervous system. While enzyme-based sensing of this type of neurotransmitter has been a research interest for years, non-enzymatic approaches are gaining more attention because of their stability and low cost. Accordingly, this focused review aims to give a summary of the state of the art of non-enzymatic electrochemical sensors used for detection of neurotransmitter that lack an electrochemically active component. In place of using enzymes, transition metal materials such as those based on nickel show an acceptable level of catalytic activity for neurotransmitter sensing. They benefit from fast electron transport properties and high surface energy and their catalytic activity can be much improved if their surface is modified with nanomaterials such as carbon nanotubes and platinum nanoparticles. However, a general comparison reveals that the performance of non-enzymatic biosensors is still lower than those that use enzyme-based methods. Nevertheless, their excellent stability demonstrates that non-enzymatic neurotransmitter sensors warrant additional research in order to advance them toward becoming an acceptable replacement for the more expensive enzyme-based sensors.
机译:谷氨酸,乙酰胆碱,胆碱和腺苷等非电活性神经递质在活生物体特别是神经系统的正常活动中起关键作用。多年来,基于酶的这种神经递质的传感研究一直受到关注,但是非酶方法由于其稳定性和低成本而受到越来越多的关注。因此,本集中综述旨在概述用于检测缺乏电化学活性成分的神经递质的非酶电化学传感器的现有技术。代替使用酶,过渡金属材料(例如,基于镍的那些材料)在神经递质传感中显示出可接受的催化活性水平。它们得益于快速的电子传输性能和高表面能,如果用纳米材料(例如碳纳米管和铂纳米颗粒)对其表面进行改性,则可以大大提高其催化活性。但是,一般比较显示非酶生物传感器的性能仍然低于使用基于酶的方法的生物传感器。尽管如此,其出色的稳定性表明,非酶类神经递质传感器需要进行更多的研究,以使它们迈向更昂贵的基于酶的传感器的可接受替代。

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