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近期关于中枢神经系统内稳态、病理学和修复中天星细胞机制的新见解。

Recent insights on astrocyte mechanisms in CNS homeostasis, pathology, and repair.

机构信息

Department of Physiology and Pathophysiology, Spinal Cord Research Centre, Children's Hospital Research Institute of Manitoba, University of Manitoba, Winnipeg, MB, Canada.

出版信息

J Neurosci Res. 2021 Oct;99(10):2427-2462. doi: 10.1002/jnr.24922. Epub 2021 Jul 14.

Abstract

Astrocytes play essential roles in development, homeostasis, injury, and repair of the central nervous system (CNS). Their development is tightly regulated by distinct spatial and temporal cues during embryogenesis and into adulthood throughout the CNS. Astrocytes have several important responsibilities such as regulating blood flow and permeability of the blood-CNS barrier, glucose metabolism and storage, synapse formation and function, and axon myelination. In CNS pathologies, astrocytes also play critical parts in both injury and repair mechanisms. Upon injury, they undergo a robust phenotypic shift known as "reactive astrogliosis," which results in both constructive and deleterious outcomes. Astrocyte activation and migration at the site of injury provides an early defense mechanism to minimize the extent of injury by enveloping the lesion area. However, astrogliosis also contributes to the inhibitory microenvironment of CNS injury and potentiate secondary injury mechanisms, such as inflammation, oxidative stress, and glutamate excitotoxicity, which facilitate neurodegeneration in CNS pathologies. Intriguingly, reactive astrocytes are increasingly a focus in current therapeutic strategies as their activation can be modulated toward a neuroprotective and reparative phenotype. This review will discuss recent advancements in knowledge regarding the development and role of astrocytes in the healthy and pathological CNS. We will also review how astrocytes have been genetically modified to optimize their reparative potential after injury, and how they may be transdifferentiated into neurons and oligodendrocytes to promote repair after CNS injury and neurodegeneration.

摘要

星形胶质细胞在中枢神经系统 (CNS) 的发育、稳态、损伤和修复中发挥着重要作用。它们的发育在胚胎发生期间和整个 CNS 成年期都受到独特的时空线索的严格调控。星形胶质细胞有几个重要的职责,如调节血流和血脑屏障的通透性、葡萄糖代谢和储存、突触形成和功能以及轴突髓鞘形成。在 CNS 病理中,星形胶质细胞在损伤和修复机制中也起着关键作用。在损伤时,它们经历了一个称为“反应性星形胶质细胞增生”的强烈表型转变,这导致了建设性和有害性的结果。星形胶质细胞在损伤部位的激活和迁移提供了一种早期防御机制,通过包围病变区域来最小化损伤的程度。然而,星形胶质细胞增生也有助于 CNS 损伤的抑制性微环境,并增强继发性损伤机制,如炎症、氧化应激和谷氨酸兴奋毒性,从而促进 CNS 病理中的神经退行性变。有趣的是,反应性星形胶质细胞越来越成为当前治疗策略的焦点,因为它们的激活可以被调节为具有神经保护和修复表型。这篇综述将讨论关于星形胶质细胞在健康和病理 CNS 中的发育和作用的最新知识进展。我们还将回顾如何对星形胶质细胞进行基因修饰,以优化其损伤后的修复潜力,以及它们如何转分化为神经元和少突胶质细胞,以促进 CNS 损伤和神经退行性变后的修复。

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