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Extracellular S100β Disrupts Bergman Glia Morphology and Synaptic Transmission in Cerebellar Purkinje Cells

机译:细胞外S100β破坏小脑浦肯野细胞的伯格曼胶质细胞形态和突触传递。

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摘要

Astrogliosis is a pathological process that affects the density, morphology, and function of astrocytes. It is a common feature of brain trauma, autoimmune diseases, and neurodegeneration including spinocerebellar ataxia type 1 (SCA1), a poorly understood neurodegenerative disease. S100β is a Ca2+ binding protein. In SCA1, excessive excretion of S100β by reactive astrocytes and its uptake by Purkinje cells has been demonstrated previously. Under pathological conditions, excessive extracellular concentration of S100β stimulates the production of proinflammatory cytokines and induces apoptosis. We modeled astrogliosis by S100β injections into cerebellar cortex in mice. Injections of S100β led to significant changes in Bergmann glia (BG) cortical organization and affected their processes. S100β also changed morphology of the Purkinje cells (PCs), causing a significant reduction in the dendritic length. Moreover, the short-term synaptic plasticity and depolarization-induced suppression of synaptic transmission were disrupted after S100β injections. We speculate that these effects are the result of Ca2+-chelating properties of S100β protein. In summary, exogenous S100β induced astrogliosis in cerebellum could lead to neuronal dysfunction, which resembles a natural neurodegenerative process. We suggest that astrocytes play an essential role in SCA1 pathology, and that astrocytic S100β is an important contributor to this process.
机译:星形胶质细胞增生是影响星形胶质细胞密度,形态和功能的病理过程。它是脑外伤,自身免疫性疾病和神经退行性变的常见特征,其中包括脊髓小脑共济失调1型(SCA1),这是一种鲜为人知的神经退行性疾病。 S100β是Ca 2 + 结合蛋白。在SCA1中,先前已经证明了反应性星形胶质细胞过度分泌S100β及其被浦肯野细胞摄取。在病理条件下,细胞外S100β浓度过高会刺激促炎细胞因子的产生并诱导细胞凋亡。我们通过向小鼠小脑皮层注射S100β来模拟星形胶质变。注射S100β导致Bergmann胶质(BG)皮质组织发生重大变化并影响其过程。 S100β还改变了Purkinje细胞(PC)的形态,导致树突长度显着减少。此外,注射S100β后,短期的突触可塑性和去极化诱导的突触传递抑制被破坏。我们推测这些作用是S100β蛋白Ca 2 + 螯合特性的结果。总之,外源性S100β引起的小脑星形胶质细胞增生可能导致神经元功能异常,这类似于自然的神经退行性过程。我们建议星形胶质细胞在SCA1病理中起重要作用,而星形细胞S100β是这一过程的重要贡献者。

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