Type I interferon response drives neuroinflammation and synapse loss in Alzheimer disease

小胶质细胞 神经炎症 老年斑 淀粉样蛋白(真菌学) 干扰素 阿尔茨海默病 神经病理学 神经退行性变 生物 免疫学 细胞生物学 病理 医学 炎症 疾病
作者
Ethan R. Roy,Baiping Wang,Ying‐Wooi Wan,Gabriel S. Chiu,Allysa Cole,Zhuoran Yin,Nicholas E. Propson,Yin Xu,Joanna L. Jankowsky,Zhandong Liu,Virginia M.‐Y. Lee,John Q. Trojanowski,Stephen D. Ginsberg,Oleg Butovsky,Hui Zheng,Wei Cao
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:130 (4): 1912-1930 被引量:544
标识
DOI:10.1172/jci133737
摘要

Type I interferon (IFN) is a key cytokine that curbs viral infection and cell malignancy. Previously, we demonstrated a potent IFN immunogenicity of nucleic acid-containing (NA-containing) amyloid fibrils in the periphery. Here, we investigated whether IFN is associated with β-amyloidosis inside the brain and contributes to neuropathology. An IFN-stimulated gene (ISG) signature was detected in the brains of multiple murine Alzheimer disease (AD) models, a phenomenon also observed in WT mouse brain challenged with generic NA-containing amyloid fibrils. In vitro, microglia innately responded to NA-containing amyloid fibrils. In AD models, activated ISG-expressing microglia exclusively surrounded NA+ amyloid β plaques, which accumulated in an age-dependent manner. Brain administration of rIFN-β resulted in microglial activation and complement C3-dependent synapse elimination in vivo. Conversely, selective IFN receptor blockade effectively diminished the ongoing microgliosis and synapse loss in AD models. Moreover, we detected activated ISG-expressing microglia enveloping NA-containing neuritic plaques in postmortem brains of patients with AD. Gene expression interrogation revealed that IFN pathway was grossly upregulated in clinical AD and significantly correlated with disease severity and complement activation. Therefore, IFN constitutes a pivotal element within the neuroinflammatory network of AD and critically contributes to neuropathogenic processes.
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