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Function of Connexins in the Interaction between Glial and Vascular Cells in the Central Nervous System and Related Neurological Diseases

机译:连接蛋白在中枢神经系统的胶质细胞和血管细胞相互作用中的功能及相关的神经系统疾病

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摘要

Neuronal signaling together with synapse activity in the central nervous system requires a precisely regulated microenvironment. Recently, the blood-brain barrier is considered as a “neuro-glia-vascular unit,” a structural and functional compound composed of capillary endothelial cells, glial cells, pericytes, and neurons, which plays a pivotal role in maintaining the balance of the microenvironment in and out of the brain. Tight junctions and adherens junctions, which function as barriers of the blood-brain barrier, are two well-known kinds in the endothelial cell junctions. In this review, we focus on the less-concerned contribution of gap junction proteins, connexins in blood-brain barrier integrity under physio-/pathology conditions. In the neuro-glia-vascular unit, connexins are expressed in the capillary endothelial cells and prominent in astrocyte endfeet around and associated with maturation and function of the blood-brain barrier through a unique signaling pathway and an interaction with tight junction proteins. Connexin hemichannels and connexin gap junction channels contribute to the physiological or pathological progress of the blood-brain barrier; in addition, the interaction with other cell-cell-adhesive proteins is also associated with the maintenance of the blood-brain barrier. Lastly, we explore the connexins and connexin channels involved in the blood-brain barrier in neurological diseases and any programme for drug discovery or delivery to target or avoid the blood-brain barrier.
机译:神经元信号与中枢神经系统中的突触活动一起需要精确调节的微环境。最近,血脑屏障被认为是“神经胶质-血管单位”,由毛细血管内皮细胞,神经胶质细胞,周细胞和神经元组成的结构和功能化合物,在维持神经胶质细胞平衡方面起着关键作用。大脑内外的微环境。紧密连接和粘附连接,其作为血脑屏障的屏障,是内皮细胞连接中的两种众所周知的类型。在这篇综述中,我们重点关注在生理/病理条件下,间隙连接蛋白,连接蛋白在血脑屏障完整性中的关注程度较低。在神经胶质血管单元中,连接蛋白在毛细血管内皮细胞中表达,并在星形胶质细胞的末端突出,并通过独特的信号通路和与紧密连接蛋白的相互作用与血脑屏障的成熟和功能相关。连接蛋白半通道和连接蛋白间隙连接通道有助于血脑屏障的生理或病理进程。另外,与其他细胞-细胞-粘附蛋白的相互作用也与血脑屏障的维持有关。最后,我们探讨了神经疾病中血脑屏障所涉及的连接蛋白和连接蛋白通道,以及针对或避免血脑屏障的任何药物发现或递送程序。

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