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Do glial cells play an anti-oxidative role in Huntington's disease?

机译:神经胶质细胞在亨廷顿舞蹈病中起抗氧化作用吗?

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摘要

Oxidative stress is a condition of imbalance between reactive oxygen species (ROS) formation and antioxidant capacity as a result of dysfunction of the antioxidant system. ROS can be served as a second messenger at low or moderate concentration, while excessive amount of ROS under oxidative stress condition would destroy macromolecules like proteins, DNA, and lipids, finally leading to cell apoptosis or necrosis. Changes in these macromolecules are involved in various pathological changes and progression of diseases, especially neurodegenerative diseases. Neurodegenerative diseases are morphologically featured by progressive neuronal cell loss, accompanied with inclusions formed by protein aggregates in neurons or glial cells. Neurons have always received much more attention than glial cells in neurodegenerative diseases. Actually, glial cells might play a key role in the functioning of neurons and cellular survival through an antioxidant way. Additionally, neurons can modulate the activities of glia either. Herein, the main purposes of this review are to mention the connection between Huntington's disease (HD) and oxidative stress, to summarize the characteristics and functions of glial cells in HD, to state the cross talk between neurons and glial cells, and to emphasize the conclusive role of activation of Keap1-Nrf2-ARE pathway in glial cells against oxidative stress in HD.
机译:氧化应激是由于抗氧化剂系统功能异常而导致的活性氧(ROS)形成与抗氧化剂容量之间不平衡的条件。 ROS可以作为中低浓度的第二信使,而在氧化应激条件下过量的ROS则会破坏大分子,如蛋白质,DNA和脂质,最终导​​致细胞凋亡或坏死。这些大分子的变化涉及各种病理变化和疾病进展,尤其是神经退行性疾病。神经退行性疾病的形态学特征是进行性神经元细胞丢失,并伴有神经元或神经胶质细胞中蛋白质聚集物形成的内含物。在神经退行性疾病中,神经元总是比神经胶质细胞受到更多的关注。实际上,神经胶质细胞可能通过抗氧化剂的方式在神经元的功能和细胞存活中起关键作用。另外,神经元也可以调节神经胶质的活动。本文中,本综述的主要目的是提及亨廷顿舞蹈病(HD)与氧化应激之间的联系,总结HD中神经胶质细胞的特征和功能,阐明神经元与神经胶质细胞之间的相互干扰,并强调胶质细胞中Keap1-Nrf2-ARE途径激活抗HD氧化应激的决定性作用。

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