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Electrochemistry at the Synapse

机译:突触的电化学

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Electrochemical measurements of neurotransmitters provide insight into the dynamics of neurotransmission. In this review, we describe the development of electrochemical measurements of neurotransmitters and how they started with extrasynaptic measurements but now are pushing toward synaptic measurements. Traditionally, biosensors or fast-scan cyclic voltammetry have monitored extrasynaptic levels of neurotransmitters, such as dopamine, serotonin, adenosine, glutamate, and acetylcholine. Amperometry and electrochemical cytometry techniques have revealed mechanisms of exocytosis, suggesting partial release. Advances in nanoelectrodes now allow spatially resolved, electrochemical measurements in a synapse, which is only 20-100 nm wide. Synaptic measurements of dopamine and acetylcholine have been made. In this article, electrochemical measurements are also compared to optical imaging and mass spectrometry measurements, and while these other techniques provide enhanced spatial or chemical information, electrochemistry is best at monitoring real-time neurotransmission. Future challenges include combining electrochemistry with these other techniques in order to facilitate multisite and multianalyte monitoring.
机译:神经递质的电化学测量提供了对神经递质的动态的洞察力。在本文中,我们描述了神经递质的电化学测量的发展以及它们如何从额外测量开始,但现在正在推动突触测量。传统上,生物传感器或快速扫描循环伏安法监测了神经递质的额外突触水平,例如多巴胺,血清素,腺苷,谷氨酸和乙酰胆碱。电流测量和电化学细胞术技术揭示了卵尿量的机制,表明部分释放。纳米电极的进步现在允许突触的空间上解决的电化学测量,这仅是20-100nm宽。已经制备了多巴胺和乙酰胆碱的突触测量。在本文中,电化学测量也与光学成像和质谱测量相比,而这些其他技术提供增强的空间或化学信息,则电化学最佳地监测实时神经传递。未来的挑战包括将电化学与这些其他技术相结合,以促进多站点和多重纳米纳利监测。

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