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The Role of Gap Junction Channels During Physiologic and Pathologic Conditions of the Human Central Nervous System

机译:间隙接线通道在人体神经系统的生理和病理条件下的作用

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摘要

Gap junctions (GJs) are expressed in most cell types of the nervous system, including neuronal stem cells, neurons, astrocytes, oligodendrocytes, cells of the blood brain barrier (endothelial cells and astrocytes) and under inflammatory conditions in microglia/macrophages. GJs connect cells by the docking of two hemichannels, one from each cell with each hemichannel being formed by 6 proteins named connexins (Cx). Unapposed hemichannels (uHC) also can be open on the surface of the cells allowing the release of different intracellular factors to the extracellular space. GJs provide a mechanism of cell-to-cell communication between adjacent cells that enables the direct exchange of intracellular messengers, such as calcium, nucleotides, IP3, and diverse metabolites, as well as electrical signals that ultimately coordinate tissue homeostasis, proliferation, differentiation, metabolism, cell survival and death. Despite their essential functions in physiological conditions, relatively little is known about the role of GJs and uHC in human diseases, especially within the nervous system. The focus of this review is to summarize recent findings related to the role of GJs and uHC in physiologic and pathologic conditions of the central nervous system.
机译:间隙结(GJS)在神经系统的大多数细胞类型中表达,包括神经元干细胞,神经元,星形胶质细胞,少突胶质细胞,血脑屏障(内皮细胞和星形胶质细胞)和微胶质细胞/巨噬细胞的炎症条件下的细胞。 GJS通过对接两个血管箱的对接,每个细胞中的每个细胞连接,每个血管内由6个蛋白质称为Connexins(CX)。悬浮的血管槽(UHC)也可以在细胞的表面上打开,允许释放对细胞外空间的不同细胞内因素。 GJ提供相邻细胞之间的细胞到细胞通信机制,其能够直接交换细胞内信使,例如钙,核苷酸,IP3和不同代谢物,以及最终坐标组织稳态,增殖,分化的电信号,新陈代谢,细胞生存和死亡。尽管它们在生理条件下的基本功能,但对GJS和UHC在人类疾病中的作用相对较少,特别是在神经系统内。本综述的重点是总结最近与GJS和UHC在中枢神经系统的生理和病理条件下的作用相关的发现。

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