Laboratory for Human Molecular Genetics, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Vojvode Stepe 444a, 11042 Belgrade, Serbia.
Faculty of Biology, University of Belgrade, Studentski trg 16, 11000 Belgrade, Serbia.
Int J Mol Sci. 2022 Apr 30;23(9):4995. doi: 10.3390/ijms23094995.
Astrocytes, as the most abundant glial cells in the central nervous system, are tightly integrated into neural networks and participate in numerous aspects of brain physiology and pathology. They are the main homeostatic cells in the central nervous system, and the loss of astrocyte physiological functions and/or gain of pro-inflammatory functions, due to their reactivation or cellular senescence, can have profound impacts on the surrounding microenvironment with pathological outcomes. Although the importance of astrocytes is generally recognized, and both senescence and reactive astrogliosis have been extensively reviewed independently, there are only a few comparative overviews of these complex processes. In this review, we summarize the latest data regarding astrocyte reactivation and senescence, and outline similarities and differences between these phenotypes from morphological, functional, and molecular points of view. A special focus has been given to neurodegenerative diseases, where these phenotypic alternations of astrocytes are significantly implicated. We also summarize current perspectives regarding new advances in model systems based on astrocytes as well as data pointing to these glial cells as potential therapeutic targets.
星形胶质细胞作为中枢神经系统中最丰富的神经胶质细胞,与神经网络紧密整合,参与大脑生理和病理的多个方面。它们是中枢神经系统的主要内稳细胞,星形胶质细胞的生理功能丧失和/或促炎功能获得(由于其重新激活或细胞衰老),会对周围微环境产生深远影响,导致病理性后果。尽管星形胶质细胞的重要性已被普遍认可,且衰老和反应性星形胶质细胞增生已被广泛独立地综述,但对这些复杂过程的比较综述却很少。在这篇综述中,我们总结了有关星形胶质细胞再激活和衰老的最新数据,并从形态、功能和分子角度概述了这些表型之间的异同。特别关注了神经退行性疾病,这些疾病中星形胶质细胞的这些表型改变具有重要意义。我们还总结了基于星形胶质细胞的模型系统的新进展方面的最新观点,以及指出这些神经胶质细胞作为潜在治疗靶点的数据。