小胶质细胞
重编程
神经保护
分泌物
巨噬细胞
炎症
疾病
神经毒性
神经炎症
细胞生物学
外围设备
体外
神经科学
机制(生物学)
体内
细胞
癌症研究
材料科学
免疫系统
药理学
原位
生物
医学
治疗方法
微泡
免疫学
泡沫电池
细胞毒性
作者
Chunwei Tang,Kun Han,Xin Wen,Jing Zhang,Weiyi Sun,Xiao Yue,Lihui Shi,Zejuan Liu,Jianxiong Zhao,Chongzheng Yan,Miaoyan Liu,Zichao Yao,Zhichao Kong,Ying Liu,Zhipeng Fu,Xiaotian Zhao,Zhenmei Yang,Maosen Han,Chen Chen,Zhaoquan Xing
标识
DOI:10.1002/adma.202520002
摘要
Pathogenic amyloid-β (Aβ) accumulation defines Alzheimer's disease (AD), directly inflicting neuronal damage and driving chronic neuroinflammation. While both central microglia and peripheral macrophages are critical for Aβ clearance, their functional impairment in AD inexorably leads to escalating Aβ burden and disease progression. We here report an in situ engineered synthetic Aβ disaggregator (SAD) delivered to macrophages via neuroprotective DHA-based lipid nanoparticles (DLNPs). This platform transcends current therapeutic limitations by not only potently dismantling neurotoxic Aβ aggregates but also by fundamentally reprogramming peripheral macrophages to enhance Aβ clearance. Specifically, our results demonstrate that DLNPs effectively reprogram peripheral macrophages to produce and secrete cerebral-penetrating SAD both in vitro and in vivo. The SAD can promote cerebral Aβ disaggregation, thereby inhibiting neuroinflammatory pathology progression. Moreover, the DLNPs efficiently reprogram the peripheral macrophages to enhance phagocytosis, further facilitating drainage of Aβ and reducing cerebral Aβ accumulation in mouse models. Collectively, these findings uncover a dual-action mechanism of SAD through the synergistic interplay of direct Aβ disaggregation and enhanced macrophage-mediated clearance. In sum, our findings establish that the central-peripheral targeting therapeutic strategy significantly reversed AD pathology, highlighting the therapeutic potential of mRNA-based in situ fusion protein in AD treatment.
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