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首页> 外文期刊>Journal of neurotrauma >The Neuroprotective Role of Reactive Astrocytes after Central Nervous System Injury
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The Neuroprotective Role of Reactive Astrocytes after Central Nervous System Injury

机译:反应性星形胶质细胞在中枢神经系统损伤后的神经保护作用

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摘要

Reactive astrocytes have traditionally been viewed as a significant contributor to secondary neuronal damage and repair inhibition after central nervous system (CNS) injury attributed, in large part, to their roles in glial scarring. However, more recent transcriptional evidence has uncovered the vast diversity in reactive astrocyte identity and functions that comprises both neuroprotective and -toxic characteristics. Additionally, the capacity of reactive astrocytes to shift between these activation states demonstrates a high level of environment-dependent plasticity that drives the interplay between neuroprotection and -toxicity after CNS injury. These recent findings have spawned a new field of research that seeks to identify and categorize the function of these discrete subpopulations in the context of neurotrauma, as well as identify their regulators. Therefore, this review will discuss the major and most recent advances in this field of research, with a primary emphasis on neuroprotection. This review will also discuss the major pitfalls present in the field, with a particular focus on model species and their impact on the development of novel therapies.
机译:传统上,活性星形胶质细胞传统上被视为中枢神经系统(CNS)损伤后的二级神经元损伤和修复抑制的重要因素,其归因于胶质瘢痕的作用。然而,最近的转录证据已经发现了反应性星形胶质细胞同一性和功能的巨大多样性,其包括神经保护和氧态特征。另外,在这些激活状态之间转移的反应性星形胶质细胞的能力证明了高水平的环境依赖性可塑性,驱动CNS损伤后神经保护和 - 氧化之间的相互作用。这些最近的发现产生了一种新的研究领域,寻求在神经统计学的背景下识别和分类这些离散群体的功能,以及识别其监管机构。因此,本综述将讨论该研究领域的主要和最新进展,主要重视神经保护。该审查还将讨论该领域的主要陷阱,特别关注模型物种及其对新型疗法发展的影响。

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