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Salidroside Inhibits Reactive Astrogliosis and Glial Scar Formation in Late Cerebral Ischemia via the Akt/GSK-3β Pathway

星形胶质增生 红景天苷 胶质瘢痕 胶质纤维酸性蛋白 星形胶质细胞 PI3K/AKT/mTOR通路 蛋白激酶B 神经保护 化学 细胞生物学 药理学 生物 癌症研究 内分泌学 免疫学 信号转导 中枢神经系统 免疫组织化学
作者
Chengya Dong,Shaohong Wen,Shunying Zhao,Si Sun,Shangfeng Zhao,Wen Dong,Pingxin Han,Qingfang Chen,Ting Gong,Wentao Chen,Wenqian Liu,Xiangrong Liu
出处
期刊:Neurochemical Research [Springer Science+Business Media]
卷期号:46 (4): 755-769 被引量:18
标识
DOI:10.1007/s11064-020-03207-8
摘要

Cerebral ischemia leads to reactive astrogliosis and glial scar formation. Glial scarring can impede functional restoration during the recovery phase of stroke. Salidroside has been shown to have neuroprotective effects after ischemic stroke, but its impact on long-term neurological recovery, especially whether it regulates reactive astrogliosis and glial scar formation, is unclear. In this study, male adult C57/BL6 mice were subjected to transient cerebral ischemia injury followed by intravenous salidroside treatment. Primary astrocytes were treated with lipopolysaccharide (LPS) or conditioned medium from cultured primary neurons subjected to oxygen-glucose deprivation (CM-OGD). Salidroside significantly improved long-term functional outcomes following ischemic stroke in the rotarod and corner tests. It also reduced brain glial scar volume and decreased expression of the glial scar marker, glial fibrillary acidic protein (GFAP) and inhibited astrocyte proliferation. In primary astrocyte cultures, salidroside protected astrocytes from CM-OGD injury-induced reactive astroglial proliferation, increasing the percentage of cells in G0/G1 phase and reducing the S populations. The inhibitory effect of salidroside on the cell cycle was related to downregulation of cyclin D1 and cyclin-dependent kinase 4 (CDK4) mRNA expression and increased p27Kip1 mRNA expression. Similar results were found in the LPS-stimulated injury model in astroglial cultures. Western blot analysis demonstrated that salidroside attenuated the CM-OGD-induced upregulation of phosphorylated Akt and glycogen synthase kinase 3β (GSK-3β). Taken together, these results suggested that salidroside can inhibit reactive astrocyte proliferation, ameliorate glial scar formation and improve long-term recovery, probably through its effects on the Akt/GSK-3β pathway.
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