神经炎症
神经科学
海马结构
神经再生
生物标志物
小胶质细胞
遗传增强
转录组
海马体
医学
生物
成像生物标志物
大脑结构与功能
非人灵长类
神经保护
灵长类动物
下调和上调
生物信息学
人脑
创伤性脑损伤
中枢神经系统
神经退行性变
功能(生物学)
非人灵长类
作者
Zhouquan Jiang,Yongpeng Qin,Bin Luo,Fan Bai,Jiayi Liu,Long Ma,Shu He,Rongjie Chen,Yuchen Wang,Shanggong Liu,Ying Sun,Yi Chen,Shuo Zhang,Jiaqi Liang,Feng Liao,Huiyi Wei,Junjie Wei,Lu Wang,Hao Xu,Zheng Wu
标识
DOI:10.1002/advs.202520239
摘要
There is a pressing demand for neuroregenerative treatment for Alzheimer's disease (AD). Recently, a NeuroD1-mediated neuroregeneration strategy has been proposed, yet its efficacy remains untested in non-human primate (NHP) AD models closely reflecting human pathology. This study evaluates the therapeutic potential of NeuroD1 AAV-based gene therapy in an NHP AD model with hippocampal hTau overexpression, utilizing immunostaining, fluorescence/confocal imaging, MRI and FDG PET scans, Simoa CSF biomarker analysis, behavioral tests, and bulk RNA sequencing. NeuroD1 AAV-based gene therapy prevents neuronal damage and degeneration, inhibits hippocampal atrophy, and reduces neuroinflammation in NHP AD models. It also repairs vascular and BBB damage, restores CSF AD biomarker levels, improves hippocampal glucose metabolism, and enhances spatial working memory. Transcriptome analysis further reveals upregulated neuronal function and synaptic transmission, along with downregulated neuroinflammation and apoptosis. Collectively, our findings demonstrate that NeuroD1 AAV-based gene therapy repairs and restores brain structure and function in NHP AD models, highlighting its therapeutic potential.
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