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研究缝隙连接耦合的方法。

Approaches to Study Gap Junctional Coupling.

作者信息

Stephan Jonathan, Eitelmann Sara, Zhou Min

机构信息

Institute of Neurobiology, Heinrich Heine University Düsseldorf, Düsseldorf, Germany.

Department of Neuroscience, Wexner Medical Center, Ohio State University, Columbus, OH, United States.

出版信息

Front Cell Neurosci. 2021 Mar 10;15:640406. doi: 10.3389/fncel.2021.640406. eCollection 2021.

Abstract

Astrocytes and oligodendrocytes are main players in the brain to ensure ion and neurotransmitter homeostasis, metabolic supply, and fast action potential propagation in axons. These functions are fostered by the formation of large syncytia in which mainly astrocytes and oligodendrocytes are directly coupled. Panglial networks constitute on connexin-based gap junctions in the membranes of neighboring cells that allow the passage of ions, metabolites, and currents. However, these networks are not uniform but exhibit a brain region-dependent heterogeneous connectivity influencing electrical communication and intercellular ion spread. Here, we describe different approaches to analyze gap junctional communication in acute tissue slices that can be implemented easily in most electrophysiology and imaging laboratories. These approaches include paired recordings, determination of syncytial isopotentiality, tracer coupling followed by analysis of network topography, and wide field imaging of ion sensitive dyes. These approaches are capable to reveal cellular heterogeneity causing electrical isolation of functional circuits, reduced ion-transfer between different cell types, and anisotropy of tracer coupling. With a selective or combinatory use of these methods, the results will shed light on cellular properties of glial cells and their contribution to neuronal function.

摘要

星形胶质细胞和少突胶质细胞是大脑中确保离子和神经递质稳态、代谢供应以及轴突中快速动作电位传播的主要参与者。这些功能通过形成大型合体细胞得以促进,其中主要是星形胶质细胞和少突胶质细胞直接相连。全胶质网络由相邻细胞膜上基于连接蛋白的缝隙连接构成,允许离子、代谢物和电流通过。然而,这些网络并非均匀一致,而是呈现出依赖于脑区的异质性连接,影响电信号通讯和细胞间离子扩散。在此,我们描述了在急性组织切片中分析缝隙连接通讯的不同方法,这些方法在大多数电生理学和成像实验室中都能轻松实现。这些方法包括配对记录、合体等电位测定、示踪剂偶联随后分析网络拓扑结构以及离子敏感染料的宽场成像。这些方法能够揭示导致功能回路电隔离、不同细胞类型之间离子转移减少以及示踪剂偶联各向异性的细胞异质性。通过选择性或组合使用这些方法,研究结果将阐明胶质细胞的细胞特性及其对神经元功能的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe27/7987795/0241c55af185/fncel-15-640406-g001.jpg

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