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Highly efficient in vitro and in vivo delivery of functional RNAs using new versatile MS2-chimeric retrovirus-like particles

RNA delivery is an attractive strategy to achieve transient gene expression in research projects and in cell- or gene-based therapies. Despite significant efforts investigating vector-directed RNA transfer, there is still a requirement for better efficiency of delivery to primary cells and in vivo....

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Autores principales: Prel, Anne, Caval, Vincent, Gayon, Régis, Ravassard, Philippe, Duthoit, Christine, Payen, Emmanuel, Maouche-Chretien, Leila, Creneguy, Alison, Nguyen, Tuan Huy, Martin, Nicolas, Piver, Eric, Sevrain, Raphaël, Lamouroux, Lucille, Leboulch, Philippe, Deschaseaux, Frédéric, Bouillé, Pascale, Sensébé, Luc, Pagès, Jean-Christophe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4613645/
https://www.ncbi.nlm.nih.gov/pubmed/26528487
http://dx.doi.org/10.1038/mtm.2015.39
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author Prel, Anne
Caval, Vincent
Gayon, Régis
Ravassard, Philippe
Duthoit, Christine
Payen, Emmanuel
Maouche-Chretien, Leila
Creneguy, Alison
Nguyen, Tuan Huy
Martin, Nicolas
Piver, Eric
Sevrain, Raphaël
Lamouroux, Lucille
Leboulch, Philippe
Deschaseaux, Frédéric
Bouillé, Pascale
Sensébé, Luc
Pagès, Jean-Christophe
author_facet Prel, Anne
Caval, Vincent
Gayon, Régis
Ravassard, Philippe
Duthoit, Christine
Payen, Emmanuel
Maouche-Chretien, Leila
Creneguy, Alison
Nguyen, Tuan Huy
Martin, Nicolas
Piver, Eric
Sevrain, Raphaël
Lamouroux, Lucille
Leboulch, Philippe
Deschaseaux, Frédéric
Bouillé, Pascale
Sensébé, Luc
Pagès, Jean-Christophe
author_sort Prel, Anne
collection PubMed
description RNA delivery is an attractive strategy to achieve transient gene expression in research projects and in cell- or gene-based therapies. Despite significant efforts investigating vector-directed RNA transfer, there is still a requirement for better efficiency of delivery to primary cells and in vivo. Retroviral platforms drive RNA delivery, yet retrovirus RNA-packaging constraints limit gene transfer to two genome-molecules per viral particle. To improve retroviral transfer, we designed a dimerization-independent MS2-driven RNA packaging system using MS2-Coat-retrovirus chimeras. The engineered chimeric particles promoted effective packaging of several types of RNAs and enabled efficient transfer of biologically active RNAs in various cell types, including human CD34(+) and iPS cells. Systemic injection of high-titer particles led to gene expression in mouse liver and transferring Cre-recombinase mRNA in muscle permitted widespread editing at the ROSA26 locus. We could further show that the VLPs were able to activate an osteoblast differentiation pathway by delivering RUNX2- or DLX5-mRNA into primary human bone-marrow mesenchymal-stem cells. Thus, the novel chimeric MS2-lentiviral particles are a versatile tool for a wide range of applications including cellular-programming or genome-editing.
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spelling pubmed-46136452015-11-02 Highly efficient in vitro and in vivo delivery of functional RNAs using new versatile MS2-chimeric retrovirus-like particles Prel, Anne Caval, Vincent Gayon, Régis Ravassard, Philippe Duthoit, Christine Payen, Emmanuel Maouche-Chretien, Leila Creneguy, Alison Nguyen, Tuan Huy Martin, Nicolas Piver, Eric Sevrain, Raphaël Lamouroux, Lucille Leboulch, Philippe Deschaseaux, Frédéric Bouillé, Pascale Sensébé, Luc Pagès, Jean-Christophe Mol Ther Methods Clin Dev Article RNA delivery is an attractive strategy to achieve transient gene expression in research projects and in cell- or gene-based therapies. Despite significant efforts investigating vector-directed RNA transfer, there is still a requirement for better efficiency of delivery to primary cells and in vivo. Retroviral platforms drive RNA delivery, yet retrovirus RNA-packaging constraints limit gene transfer to two genome-molecules per viral particle. To improve retroviral transfer, we designed a dimerization-independent MS2-driven RNA packaging system using MS2-Coat-retrovirus chimeras. The engineered chimeric particles promoted effective packaging of several types of RNAs and enabled efficient transfer of biologically active RNAs in various cell types, including human CD34(+) and iPS cells. Systemic injection of high-titer particles led to gene expression in mouse liver and transferring Cre-recombinase mRNA in muscle permitted widespread editing at the ROSA26 locus. We could further show that the VLPs were able to activate an osteoblast differentiation pathway by delivering RUNX2- or DLX5-mRNA into primary human bone-marrow mesenchymal-stem cells. Thus, the novel chimeric MS2-lentiviral particles are a versatile tool for a wide range of applications including cellular-programming or genome-editing. Nature Publishing Group 2015-10-21 /pmc/articles/PMC4613645/ /pubmed/26528487 http://dx.doi.org/10.1038/mtm.2015.39 Text en Copyright © 2015 Official journal of the American Society of Gene & Cell Therapy http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Prel, Anne
Caval, Vincent
Gayon, Régis
Ravassard, Philippe
Duthoit, Christine
Payen, Emmanuel
Maouche-Chretien, Leila
Creneguy, Alison
Nguyen, Tuan Huy
Martin, Nicolas
Piver, Eric
Sevrain, Raphaël
Lamouroux, Lucille
Leboulch, Philippe
Deschaseaux, Frédéric
Bouillé, Pascale
Sensébé, Luc
Pagès, Jean-Christophe
Highly efficient in vitro and in vivo delivery of functional RNAs using new versatile MS2-chimeric retrovirus-like particles
title Highly efficient in vitro and in vivo delivery of functional RNAs using new versatile MS2-chimeric retrovirus-like particles
title_full Highly efficient in vitro and in vivo delivery of functional RNAs using new versatile MS2-chimeric retrovirus-like particles
title_fullStr Highly efficient in vitro and in vivo delivery of functional RNAs using new versatile MS2-chimeric retrovirus-like particles
title_full_unstemmed Highly efficient in vitro and in vivo delivery of functional RNAs using new versatile MS2-chimeric retrovirus-like particles
title_short Highly efficient in vitro and in vivo delivery of functional RNAs using new versatile MS2-chimeric retrovirus-like particles
title_sort highly efficient in vitro and in vivo delivery of functional rnas using new versatile ms2-chimeric retrovirus-like particles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4613645/
https://www.ncbi.nlm.nih.gov/pubmed/26528487
http://dx.doi.org/10.1038/mtm.2015.39
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