内体
细胞内
基因传递
细胞外小泡
信使核糖核酸
细胞生物学
输送系统
化学
体内
微泡
细胞外
小泡
脂泡
体外
电穿孔
细胞
胞外囊泡
生物物理学
外体
离体
转染
分布(数学)
药物输送
细胞内转运
荧光素酶
基因表达
脂质体
纳米粒子跟踪分析
作者
Xiaoqin Wang,Michael J. Munson,Kristina Pagh Friis,Anna M. Marzeda,Andréia Maria da Silva,Franziska Kohl,Leif Hultin,Raymond M. Schiffelers,Niek Dekker
摘要
Extracellular vesicles (EVs) are an attractive delivery vehicle with biological activity, intrinsic homing, low immunogenicity, and engineerability; however, challenges remain regarding loading and functional delivery of mRNA. Here, we developed a novel approach to load mRNA through low pH-induced fusion of EVs with lipid nanoparticles (LNPs) to generate hybrid EVs (HEVs). Conventional characterization showed that HEVs preserved classical features of EVs. Single particle analysis revealed successful loading of mRNA and incorporation of LNP components into HEVs. The combined properties from EV and LNP contributed to the excellent cell tolerability of HEV, overcoming dose-limit toxicity, and functional delivery of mRNA by HEV. We further elucidated the mechanism of HEV-mediated intracellular delivery of mRNA. Our results showed that in contrast to source EVs, HEVs were capable of inducing endosomal escape, facilitating intracellular delivery of mRNA. Furthermore, HEVs functionally delivered mRNA in vivo and displayed extrahepatic delivery capacity with predominant functional distribution in spleen. Our results suggest HEVs as a promising EV-based delivery platform for mRNA delivery.
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