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星形胶质细胞病理生理学:细胞间网络、炎症和细胞死亡的交汇点。

Astrocyte physiopathology: At the crossroads of intercellular networking, inflammation and cell death.

机构信息

Laboratory for Research on Neurodegenerative Disorders, IRCCS Fondazione Salvatore Maugeri, Via Maugeri 10, 27100 Pavia, Italy.

出版信息

Prog Neurobiol. 2015 Jul;130:86-120. doi: 10.1016/j.pneurobio.2015.04.003. Epub 2015 Apr 27.

Abstract

Recent breakthroughs in neuroscience have led to the awareness that we should revise our traditional mode of thinking and studying the CNS, i.e. by isolating the privileged network of "intelligent" synaptic contacts. We may instead need to contemplate all the variegate communications occurring between the different neural cell types, and centrally involving the astrocytes. Basically, it appears that a single astrocyte should be considered as a core that receives and integrates information from thousands of synapses, other glial cells and the blood vessels. In turn, it generates complex outputs that control the neural circuitry and coordinate it with the local microcirculation. Astrocytes thus emerge as the possible fulcrum of the functional homeostasis of the healthy CNS. Yet, evidence indicates that the bridging properties of the astrocytes can change in parallel with, or as a result of, the morphological, biochemical and functional alterations these cells undergo upon injury or disease. As a consequence, they have the potential to transform from supportive friends and interactive partners for neurons into noxious foes. In this review, we summarize the currently available knowledge on the contribution of astrocytes to the functioning of the CNS and what goes wrong in various pathological conditions, with a particular focus on Amyotrophic Lateral Sclerosis, Alzheimer's Disease and ischemia. The observations described convincingly demonstrate that the development and progression of several neurological disorders involve the de-regulation of a finely tuned interplay between multiple cell populations. Thus, it seems that a better understanding of the mechanisms governing the integrated communication and detrimental responses of the astrocytes as well as their impact towards the homeostasis and performance of the CNS is fundamental to open novel therapeutic perspectives.

摘要

神经科学的最新突破使人们意识到,我们应该修正传统的思维和研究中枢神经系统的模式,即不再孤立地研究“智能”突触连接的优势网络。相反,我们可能需要考虑不同神经细胞类型之间发生的所有多样化的通讯,并且中枢神经系统还涉及星形胶质细胞。从本质上讲,似乎应该将单个星形胶质细胞视为一个核心,该核心可以接收和整合来自数千个突触、其他神经胶质细胞和血管的信息。反过来,它会生成复杂的输出,从而控制神经网络并协调其与局部微循环的关系。因此,星形胶质细胞成为健康中枢神经系统功能动态平衡的可能支点。然而,有证据表明,星形胶质细胞的桥接特性可以随着这些细胞在受伤或患病时所经历的形态、生化和功能改变而平行改变,或者作为其改变的结果。因此,它们有可能从神经元的支持性朋友和交互伙伴转变为有害的敌人。在这篇综述中,我们总结了目前关于星形胶质细胞对中枢神经系统功能的贡献以及在各种病理条件下星形胶质细胞出现的问题的相关知识,特别关注肌萎缩侧索硬化症、阿尔茨海默病和缺血。这些观察结果令人信服地证明,几种神经疾病的发展和进展都涉及到多个细胞群体之间精细调控的相互作用失调。因此,似乎更好地理解调节星形胶质细胞整合通讯和有害反应的机制,以及它们对中枢神经系统的稳态和功能的影响,对于开辟新的治疗前景至关重要。

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