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Glatiramer acetate fights against Alzheimer’s disease by inducing dendritic-like microglia expressing insulin-like growth factor 1

机译:醋酸格拉替雷可诱导树突状小胶质细胞表达胰岛素样生长因子1,从而对抗阿尔茨海默氏病

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摘要

Alzheimer’s disease (AD) is characterized by plaque formation, neuronal loss, and cognitive decline. The functions of the local and systemic immune response in this disease are still controversial. Using AD double-transgenic (APP/PS1) mice, we show that a T cell-based vaccination with glatiramer acetate, given according to a specific regimen, resulted in decreased plaque formation and induction of neurogenesis. It also reduced cognitive decline, assessed by performance in a Morris water maze. The vaccination apparently exerted its effect by causing a phenotype switch in brain microglia to dendritic-like (CD11c) cells producing insulin-like growth factor 1. In vitro findings showed that microglia activated by aggregated β-amyloid, and characterized as CD11b+/CD11c−/MHC class II−/TNF-α+ cells, impeded neurogenesis from adult neural stem/progenitor cells, whereas CD11b+/CD11c+/MHC class II+/TNF-α− microglia, a phenotype induced by IL-4, counteracted the adverse β-amyloid-induced effect. These results suggest that dendritic-like microglia, by facilitating the necessary adjustment, might contribute significantly to the brain’s resistance to AD and argue against the use of antiinflammatory drugs.
机译:阿尔茨海默氏病(AD)的特征是斑块形成,神经元丢失和认知能力下降。在这种疾病中局部和全身免疫应答的功能仍存在争议。使用AD双转基因(APP / PS1)小鼠,我们显示了根据特定方案给予的醋酸格拉替雷基于T细胞的疫苗接种,可减少斑块形成并诱导神经发生。通过在莫里斯水迷宫中的表现评估,它还减少了认知能力下降。疫苗接种显然是通过引起脑小胶质细胞表型转换为产生胰岛素样生长因子1的树突状(CD11c)细胞而发挥作用的。体外研究表明,小胶质细胞被聚集的β-淀粉样蛋白激活,并被表征为CD11b + / CD11c- / MHC II- /TNF-α+细胞阻止了成年神经干/祖细胞的神经发生,而由IL-4诱导的表型CD11b + / CD11c + / MHC II + /TNF-α-小胶质细胞则抵消了不利的β-淀粉样蛋白诱导的作用。这些结果表明,通过促进必要的调节,树突状小胶质细胞可能会显着促进大脑对AD的抵抗力,并反对使用抗炎药。

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