转染
体内分布
内化
基因传递
信使核糖核酸
向性
细胞内
转基因
遗传增强
中枢神经系统
基因表达
人脑
受体
血脑屏障
细胞生物学
神经科学
药物输送
化学
计算生物学
分子生物学
生物
药理学
脂质体
转基因小鼠
基因表达谱
全身给药
病毒载体
生物物理学
基因
作者
Mor Sela,Gal Chen,Haim Kadosh,Tomer Kagan,Raneen Nicola,Sally Turutov,Yuval Richtman,Lin Zhige,Mia R. Albalak Menasherov,Shaked Kagan,Tzur Schroeder,Patricia Mora‐Raimundo,Reaam Kablan,Egor Egorov,Anas Odeh,Tasneem Abu-Raiya,Inbal Abutbul‐Ionita,Inbar Freilich,Galoz Kaneti,Ibrahim Knani
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-09-16
卷期号:19 (41): 36106-36128
被引量:22
标识
DOI:10.1021/acsnano.4c15013
摘要
validation of its predictive capacity. Cell-specific biodistribution analysis in Cre-reporter Ai9 mice showed that acetylcholine-functionalized LNPs preferentially transfected neurons and astrocytes following either intravenous or intracerebral administration. Mechanistic studies suggest that acetylcholine-LNP uptake is mediated by the functional engagement of acetylcholine receptors (AchRs) followed by endocytosis, which synergistically enhances intracellular mRNA delivery. Moreover, acetylcholine-LNPs successfully crossed a human BBB-on-a-chip model, enabling transgene expression in human iPSC-derived neurons. Their effective penetration and transfection in human brain organoids further support their potential activity in human-based systems. These findings establish a predictive and modular framework for engineering CNS-targeted LNPs, advancing precision gene delivery for brain disorders.
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