生物
脑膜
颅骨
神经退行性变
神经炎症
脑脊液
神经科学
蛋白质组
人脑
创伤性脑损伤
小胶质细胞
脑膜炎
解剖
免疫学
病理
生物信息学
炎症
医学
疾病
精神科
作者
Zhouyi Rong,Hongcheng Mai,Gregor Ebert,Saketh Kapoor,Victor G. Puelles,Jan Czogalla,Senbin Hu,Jinpeng Su,Danilo Prtvar,Inderjeet Singh,Julia Schädler,Claire Delbridge,Hanno Steinke,H. Frenzel,Katja Schmidt,C. Braun,Gina Bruch,Viktoria Ruf,Mayar Ali,Kurt‐Wolfram Sühs
标识
DOI:10.1016/j.chom.2024.11.007
摘要
SARS-CoV-2 infection is associated with long-lasting neurological symptoms, although the underlying mechanisms remain unclear. Using optical clearing and imaging, we observed the accumulation of SARS-CoV-2 spike protein in the skull-meninges-brain axis of human COVID-19 patients, persisting long after viral clearance. Further, biomarkers of neurodegeneration were elevated in the cerebrospinal fluid from long COVID patients, and proteomic analysis of human skull, meninges, and brain samples revealed dysregulated inflammatory pathways and neurodegeneration-associated changes. Similar distribution patterns of the spike protein were observed in SARS-CoV-2-infected mice. Injection of spike protein alone was sufficient to induce neuroinflammation, proteome changes in the skull-meninges-brain axis, anxiety-like behavior, and exacerbated outcomes in mouse models of stroke and traumatic brain injury. Vaccination reduced but did not eliminate spike protein accumulation after infection in mice. Our findings suggest persistent spike protein at the brain borders may contribute to lasting neurological sequelae of COVID-19.
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