串扰
利鲁唑
神经科学
谷氨酸受体
特雷姆2
下调和上调
兴奋剂
美金刚
医学
化学
神经退行性变
肌萎缩侧索硬化
兴奋性突触后电位
药理学
喹啉酸
神经传递
淀粉样蛋白(真菌学)
小胶质细胞
纳米载体
癌症研究
神经保护
联合疗法
阿尔茨海默病
肽
谷氨酸的
细胞生物学
离子通道
代谢型谷氨酸受体
谷氨酸
疾病
神经毒性
淀粉样β
细胞外
感觉系统
生物信息学
多发性硬化
神经突
作者
Ying Wang,Jinfu Li,Ding Zhang,Yinyao Feng,Mengni Zhou,Chang Zhou,Dijia Wang,Gaolin Qiu,Wei Dai,Zhilai Yang,Yunjiao Zhang,Li Zhang,Xuesheng Liu,Jiqian Zhang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-10-23
卷期号:19 (43): 37617-37632
被引量:4
标识
DOI:10.1021/acsnano.5c08317
摘要
Current therapies for Alzheimer’s disease (AD) primarily target amyloid-β (Aβ) pathology using monoclonal antibodies, yet their limited efficacy partly results from unintended exacerbation of neural hyperexcitability. This highlights a critical but under-appreciated link between Aβ clearance and neuronal network dysfunction. Here, we designed R@AClipo, a nanotherapeutic platform that codelivers the TREM2 agonist peptide COG1410 and the glutamate modulator riluzole via Angiopep-2–modified liposomes capable of crossing the blood–brain barrier. In AD model mice, R@AClipo upregulated TREM2 expression and enhanced microglial-mediated Aβ clearance. Concurrently, it reduced glutamate accumulation and mitigated neuronal hyperexcitability, as measured by in vivo fiber photometry. Notably, TREM2-driven Aβ clearance alone modestly reduced hyperexcitability, independent of riluzole, contrasting with the excitatory effects frequently associated with antibody-based Aβ therapies. This combinatorial strategy improved cognitive performance and restored neural activity patterns without observable toxicity. Together, these findings support a physiologically compatible strategy that targets the pathological crosstalk between Aβ accumulation and neural hyperexcitability, offering a promising avenue for AD intervention.
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