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Boosting Intracellular Delivery of Lipid Nanoparticle-Encapsulated mRNA.
Patel, Siddharth; Ashwanikumar, N; Robinson, Emily; DuRoss, Allison; Sun, Conroy; Murphy-Benenato, Kerry E; Mihai, Cosmin; Almarsson, Örn; Sahay, Gaurav.
Afiliação
  • Patel S; Department of Pharmaceutical Sciences, College of Pharmacy, Oregon State University , Collaborative Life Science Building, 2730 SW Moody Avenue, Portland, Oregon 97201, United States.
  • Ashwanikumar N; Department of Pharmaceutical Sciences, College of Pharmacy, Oregon State University , Collaborative Life Science Building, 2730 SW Moody Avenue, Portland, Oregon 97201, United States.
  • Robinson E; Department of Pharmaceutical Sciences, College of Pharmacy, Oregon State University , Collaborative Life Science Building, 2730 SW Moody Avenue, Portland, Oregon 97201, United States.
  • DuRoss A; Department of Pharmaceutical Sciences, College of Pharmacy, Oregon State University , Collaborative Life Science Building, 2730 SW Moody Avenue, Portland, Oregon 97201, United States.
  • Sun C; Department of Pharmaceutical Sciences, College of Pharmacy, Oregon State University , Collaborative Life Science Building, 2730 SW Moody Avenue, Portland, Oregon 97201, United States.
  • Murphy-Benenato KE; Department of Radiation Medicine, School of Medicine, Oregon Health and Science University , 3181 SW Sam Jackson Park Road, Portland, Oregon 97239, United States.
  • Mihai C; Moderna Therapeutics , 200 Technology Square, Cambridge, Massachusetts 02139, United States.
  • Almarsson Ö; Moderna Therapeutics , 200 Technology Square, Cambridge, Massachusetts 02139, United States.
  • Sahay G; Moderna Therapeutics , 200 Technology Square, Cambridge, Massachusetts 02139, United States.
Nano Lett ; 17(9): 5711-5718, 2017 09 13.
Article em En | MEDLINE | ID: mdl-28836442
ABSTRACT
Intracellular delivery of mRNA holds great potential for vaccine1-3 and therapeutic4 discovery and development. Despite increasing recognition of the utility of lipid-based nanoparticles (LNPs) for intracellular delivery of mRNA, particle engineering is hindered by insufficient understanding of endosomal escape, which is believed to be a main limiter of cytosolic availability and activity of the nucleic acid inside the cell. Using a series of CRISPR-based genetic perturbations of the lysosomal pathway, we have identified that late endosome/lysosome (LE/Ly) formation is essential for functional delivery of exogenously presented mRNA. Lysosomes provide a spatiotemporal hub to orchestrate mTOR signaling and are known to control cell proliferation, nutrient sensing, ribosomal biogenesis, and mRNA translation. Through modulation of the mTOR pathway we were able to enhance or inhibit LNP-mediated mRNA delivery. To further boost intracellular delivery of mRNA, we screened 212 bioactive lipid-like molecules that are either enriched in vesicular compartments or modulate cell signaling. Surprisingly, we have discovered that leukotriene-antagonists, clinically approved for treatment of asthma and other lung diseases, enhance intracellular mRNA delivery in vitro (over 3-fold, p < 0.005) and in vivo (over 2-fold, p < 0.005). Understanding LNP-mediated intracellular delivery will inspire the next generation of RNA therapeutics that have high potency and limited toxicity.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: RNA Mensageiro / Técnicas de Transferência de Genes / Nanopartículas / Lipídeos Limite: Animals / Female / Humans Idioma: En Revista: Nano Lett Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: RNA Mensageiro / Técnicas de Transferência de Genes / Nanopartículas / Lipídeos Limite: Animals / Female / Humans Idioma: En Revista: Nano Lett Ano de publicação: 2017 Tipo de documento: Article