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微/纳电极定量监测囊泡神经递质释放与储存的研究进展

Recent Progress in Quantitatively Monitoring Vesicular Neurotransmitter Release and Storage With Micro/Nanoelectrodes.

作者信息

Liu Yuying, Du Jinchang, Wang Mengying, Zhang Jing, Liu Chunlan, Li Xianchan

机构信息

Center for Imaging and Systems Biology, College of Life and Environmental Sciences, Minzu University of China, Beijing, China.

出版信息

Front Chem. 2021 Jan 11;8:591311. doi: 10.3389/fchem.2020.591311. eCollection 2020.

Abstract

Exocytosis is one of the essential steps for chemical signal transmission between neurons. In this process, vesicles dock and fuse with the plasma membrane and release the stored neurotransmitters through fusion pores into the extracellular space, and all of these steps are governed with various molecules, such as proteins, ions, and even lipids. Quantitatively monitoring vesicular neurotransmitter release in exocytosis and initial neurotransmitter storage in individual vesicles is significant for the study of chemical signal transmission of the central nervous system (CNS) and neurological diseases. Electrochemistry with micro/nanoelectrodes exhibits great spatial-temporal resolution and high sensitivity. It can be used to examine the exocytotic kinetics from the aspect of neurotransmitters and quantify the neurotransmitter storage in individual vesicles. In this review, we first introduce the recent advances of single-cell amperometry (SCA) and the nanoscale interface between two immiscible electrolyte solutions (nanoITIES), which can monitor the quantity and release the kinetics of electrochemically and non-electrochemically active neurotransmitters, respectively. Then, the development and application of the vesicle impact electrochemical cytometry (VIEC) and intracellular vesicle impact electrochemical cytometry (IVIEC) and their combination with other advanced techniques can further explain the mechanism of neurotransmitter storage in vesicles before exocytosis. It has been proved that these electrochemical techniques have great potential in the field of neuroscience.

摘要

胞吐作用是神经元之间化学信号传递的关键步骤之一。在此过程中,囊泡与质膜对接并融合,通过融合孔将储存的神经递质释放到细胞外空间,所有这些步骤都受各种分子调控,如蛋白质、离子甚至脂质。定量监测胞吐作用中囊泡神经递质的释放以及单个囊泡中神经递质的初始储存,对于研究中枢神经系统(CNS)的化学信号传递和神经疾病具有重要意义。微/纳电极电化学具有出色的时空分辨率和高灵敏度。它可用于从神经递质方面研究胞吐动力学,并量化单个囊泡中神经递质的储存。在本综述中,我们首先介绍单细胞安培法(SCA)和两种不混溶电解质溶液之间的纳米级界面(纳米ITIES)的最新进展,它们可分别监测电化学和非电化学活性神经递质的量并释放其动力学。然后,囊泡撞击电化学细胞术(VIEC)和细胞内囊泡撞击电化学细胞术(IVIEC)的发展与应用以及它们与其他先进技术的结合,可进一步解释胞吐作用前神经递质在囊泡中的储存机制。事实证明,这些电化学技术在神经科学领域具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e93/7831278/4bbefb3a7f86/fchem-08-591311-g0001.jpg

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