RRC ID 57738
著者 Kurimoto S, Yoshinaga N, Igarashi K, Matsumoto Y, Cabral H, Uchida S.
タイトル PEG-OligoRNA Hybridization of mRNA for Developing Sterically Stable Lipid Nanoparticles toward In Vivo Administration.
ジャーナル Molecules
Abstract Lipid nanoparticles (LNPs) exhibit high potential as carriers of messenger RNA (mRNA). However, the arduous preparation process of mRNA-loaded LNPs remains a huge obstacle for their widespread clinical application. Herein, we tackled this issue by mRNA PEGylation through hybridization with polyethylene glycol (PEG)-conjugated RNA oligonucleotides (PEG-OligoRNAs). Importantly, mRNA translational activity was preserved even after hybridization of 20 PEG-OligoRNAs per mRNA. The straightforward mixing of the PEGylated mRNA with lipofectamine LTX, a commercial lipid-based carrier, just by pipetting in aqueous solution, allowed the successful preparation of mRNA-loaded LNPs with a diameter below 100 nm, whereas the use of non-PEGylated mRNA provided large aggregates above 100- and 1000-nm. In vivo, LNPs prepared from PEG-OligoRNA-hybridized mRNA exhibited high structural stability in biological milieu, without forming detectable aggregates in mouse blood after intravenous injection. In contrast, LNPs from non-PEGylated mRNA formed several micrometer-sized aggregates in blood, leading to rapid clearance from blood circulation and deposition of the aggregates in lung capillaries. Our strategy of mRNA PEGylation was also versatile to prevent aggregation of another type of mRNA-loaded LNP, DOTAP/Chol liposomes. Together, our approach provides a simple and robust preparation method to LNPs for in vivo application.
巻・号 24(7)
公開日 2019-4-3
DOI 10.3390/molecules24071303
PII molecules24071303
PMID 30987102
PMC PMC6479949
MeSH Cells, Cultured Lipids* / chemistry Liposomes Nanoparticles / chemistry* Nanoparticles / ultrastructure Nucleic Acid Hybridization Oligoribonucleotides / chemistry Polyethylene Glycols* / chemistry RNA, Messenger* / chemistry Transfection
IF 3.267
引用数 1
リソース情報
ヒト・動物細胞 HuH-7