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首页> 外文期刊>American Journal of Translational Research >Elevated hippocampal CD24 in astrocytes participates in neural regeneration possibly via activating SHP2/ERK pathway after experimental traumatic brain injury in mice
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Elevated hippocampal CD24 in astrocytes participates in neural regeneration possibly via activating SHP2/ERK pathway after experimental traumatic brain injury in mice

机译:在星形胶质细胞中升高的海马CD24可能通过在小鼠实验创伤脑损伤后激活SHP2 / ERK途径参与神经再生

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摘要

Massive neuron loss is the key reason for poor prognoses in patients with traumatic brain injury (TBI), and astrocytes function as nutrition-providing neurons. Therefore, researchers must determine the potential role of astrocytes in neural regeneration after TBI. Our previous studies established that upregulating CD24 in the hippocampus might improve cognitive functions after TBI. However, whether CD24 in hippocampal astrocytes is involved in neural regeneration after TBI remains unknown. Therefore, we detected the CD24 expression in the ipsilateral hippocampus via western blot and quantitative real-time PCR. We further investigated the CD24 expression patterns in hippocampal astrocytes via immunofluorescence staining. We then injected adeno-associated virus-Gfa2-siRNA-CD24 (AAV-CD24) into the astrocytes to downregulate CD24 and analyzed the related cellular signals. Golgi-Cox staining and the growth associated protein-43 (GAP43) level were used to observe neuronal morphology and neural regeneration around the astrocytes in the ipsilateral hippocampus, and the Morris water maze test was used to assess neural functional recovery. The CD24 protein and mRNA levels in the cornu ammonis and dentate gyrus regions of the ipsilateral hippocampus were elevated after TBI, and high CD24 expression was widespread in the hippocampal astrocytes after TBI. Specific inhibition of CD24 in the hippocampal astrocytes interfered with the activation of Src homology region 2 containing protein tyrosine phosphatase 2 (SHP2) and extracellular signal regulated kinase (ERK), shortened the neuronal dendritic spines, decreased the GAP43 level and impaired the cognitive functions of the TBI-model mice. These results revealed that elevated hippocampal CD24 in astrocytes participated in neural regeneration in mice after TBI, possibly by activating the SHP2/ERK pathway.
机译:巨大的神经元损失是创伤性脑损伤(TBI)患者患者的关键原因,以及作为营养提供神经元的星形胶质细胞。因此,研究人员必须确定星形胶质细胞在TBI后神经元素中的潜在作用。我们以前的研究建立了在TBI后的上调CD24可能改善认知功能。然而,在TBI仍然未知后,海马星形胶质细胞中的CD24是否参与神经再生。因此,我们通过蛋白质印迹和定量实时PCR检测了Ipsilidallal海马中的CD24表达。我们进一步通过免疫荧光染色研究了海马星形胶质细胞中的CD24表达模式。然后,我们将腺相关病毒-GFA2-siRNA-CD24(AAV-CD24)注入星形胶质细胞中以下调CD24并分析相关细胞信号。 Golgi-Cox染色和生长相关的蛋白-43(GAP43)水平用于观察围绕同侧海马的星形胶质细胞周围的神经元形态和神经再生,并使用Morris水迷宫试验评估神经功能恢复。在TBI之后,玉米氨氨胺和齿状海马的牙齿和齿状腺样区域中的CD24蛋白和mRNA水平升高,并且在TBI后的海马星形胶质细胞中普及高CD24表达。特异性抑制CD24在含有蛋白酪氨酸磷酸酶2(SHP2)和细胞外信号调节激酶(ERK)的SRC同源区2激活的海马星形胶质细胞中干扰的海马星形胶质细胞中的CD24,缩短了神经元树突刺,降低了GAP43水平并损害了认知功能TBI模型小鼠。这些结果表明,在TBI之后,通过激活SHP2 / ERK途径,在TBI之后参与小鼠的神经细胞中的海马CD24升高。

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