内体
内吞作用
信使核糖核酸
细胞生物学
核糖核酸
化学
体内
生物
生物化学
细胞内
基因
细胞
遗传学
作者
Marco Maugeri,Muhammad Nawaz,Alexandros Papadimitriou,Annelie Angerfors,Alessandro Camponeschi,Manli Na,Mikko Hölttä,Pia Skantze,Svante Johansson,Martina Sundqvist,Johnny Lindquist,Tomas Kjellman,Inga‐Lill Mårtensson,Tao Jin,Per Sunnerhagen,Sofia Östman,Lennart Lindfors,Hadi Valadi
标识
DOI:10.1038/s41467-019-12275-6
摘要
RNA-based therapeutics hold great promise for treating diseases and lipid nanoparticles (LNPs) represent the most advanced platform for RNA delivery. However, the fate of the LNP-mRNA after endosome-engulfing and escape from the autophagy-lysosomal pathway remains unclear. To investigate this, mRNA (encoding human erythropoietin) was delivered to cells using LNPs, which shows, for the first time, a link between LNP-mRNA endocytosis and its packaging into extracellular vesicles (endo-EVs: secreted after the endocytosis of LNP-mRNA). Endosomal escape of LNP-mRNA is dependent on the molar ratio between ionizable lipids and mRNA nucleotides. Our results show that fractions of ionizable lipids and mRNA (1:1 molar ratio of hEPO mRNA nucleotides:ionizable lipids) of endocytosed LNPs were detected in endo-EVs. Importantly, these EVs can protect the exogenous mRNA during in vivo delivery to produce human protein in mice, detected in plasma and organs. Compared to LNPs, endo-EVs cause lower expression of inflammatory cytokines.
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