微泡
神经炎症
基因沉默
小干扰RNA
细胞生物学
RNA干扰
小RNA
神经科学
细胞内
基因传递
串扰
癌症研究
小胶质细胞
神经退行性变
生物
激酶
医学
中枢神经系统
信号转导
化学
神经系统
转录组
核糖核酸
细胞
神经干细胞
外体
转基因
细胞培养
作者
Chi Zhang,Junhua Zhang,Yuzhi Wang,Yaodong Wang,Lin Peng,Yanling Wang,Zixuan Tang,Jie Yu,Qin Zhou,Feiyun Cui
摘要
A major challenge in RNA therapeutics for central nervous system disorders is the lack of delivery systems capable of crossing the blood-brain barrier (BBB) while achieving cell-type-specific targeting. Herein, we develop an engineered exosomal siRNA delivery platform for systemic, neuron-targeted RNA transport to the brain. The platform leverages exosomes derived from an immortalized mouse hippocampal neuronal cell line as a biomimetic and functionally privileged material source, enhancing neuronal uptake and intracellular delivery efficiency. Through surface functionalization with a rabies virus glycoprotein-derived peptide, the system enables receptor-mediated BBB transcytosis and programmable siRNA loading. In human cortical organoids, the platform achieves efficient cytosolic delivery and robust gene silencing in neurons, demonstrating high delivery precision and bioavailability. As a proof of concept, targeting receptor-interacting protein kinase 3 (RIPK3) modulates necroptosis, a key pathway in inflammatory neurodegeneration. In transgenic mouse models, systemic administration suppresses RIPK3/MLKL signaling, reduces neuronal loss, and alleviates neuroinflammation and tau-associated pathology. Transcriptomic analyses further indicate stabilization of neuronal homeostasis across vulnerable brain regions. Collectively, the study establishes a modular and programmable exosomal RNA delivery platform and highlights age-defined, cell-derived biomaterials as a generalizable strategy for overcoming delivery barriers in neurological diseases.
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