Linkage between endosomal escape of LNP-mRNA and loading into EVs for transport to other cells

Lipid nanoparticles (LNPs) are potential platforms for RNA-based therapeutics, but the fate of LNP-RNAs upon internalization into the cell is unclear. Here, the authors show that LNP-mRNAs and ionizable lipids escape the endosomes and are re-released via extracellular vesicles which could deliver th...

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Autores principales: 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
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/8b2d6ac14e79424d88fcb0a687a8a932
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spelling oai:doaj.org-article:8b2d6ac14e79424d88fcb0a687a8a9322021-12-02T16:57:52ZLinkage between endosomal escape of LNP-mRNA and loading into EVs for transport to other cells10.1038/s41467-019-12275-62041-1723https://doaj.org/article/8b2d6ac14e79424d88fcb0a687a8a9322019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12275-6https://doaj.org/toc/2041-1723Lipid nanoparticles (LNPs) are potential platforms for RNA-based therapeutics, but the fate of LNP-RNAs upon internalization into the cell is unclear. Here, the authors show that LNP-mRNAs and ionizable lipids escape the endosomes and are re-released via extracellular vesicles which could deliver the functional mRNA to other cells.Marco MaugeriMuhammad NawazAlexandros PapadimitriouAnnelie AngerforsAlessandro CamponeschiManli NaMikko HölttäPia SkantzeSvante JohanssonMartina SundqvistJohnny LindquistTomas KjellmanInga-Lill MårtenssonTao JinPer SunnerhagenSofia ÖstmanLennart LindforsHadi ValadiNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-15 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
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
Linkage between endosomal escape of LNP-mRNA and loading into EVs for transport to other cells
description Lipid nanoparticles (LNPs) are potential platforms for RNA-based therapeutics, but the fate of LNP-RNAs upon internalization into the cell is unclear. Here, the authors show that LNP-mRNAs and ionizable lipids escape the endosomes and are re-released via extracellular vesicles which could deliver the functional mRNA to other cells.
format article
author 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
author_facet 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
author_sort Marco Maugeri
title Linkage between endosomal escape of LNP-mRNA and loading into EVs for transport to other cells
title_short Linkage between endosomal escape of LNP-mRNA and loading into EVs for transport to other cells
title_full Linkage between endosomal escape of LNP-mRNA and loading into EVs for transport to other cells
title_fullStr Linkage between endosomal escape of LNP-mRNA and loading into EVs for transport to other cells
title_full_unstemmed Linkage between endosomal escape of LNP-mRNA and loading into EVs for transport to other cells
title_sort linkage between endosomal escape of lnp-mrna and loading into evs for transport to other cells
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/8b2d6ac14e79424d88fcb0a687a8a932
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