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miR-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured Duchenne dystrophic muscle

Satellite cells (SCs), muscle stem cells, display functional heterogeneity, and dramatic changes linked to their regenerative capabilities are associated with muscle-wasting diseases. SC behavior is related to endogenous expression of the myogenic transcription factor MYF5 and the propensity to ente...

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Autores principales: Rodriguez-Outeiriño, Lara, Hernandez-Torres, Francisco, Ramirez de Acuña, Felicitas, Rastrojo, Alberto, Creus, Carlota, Carvajal, Alejandra, Salmeron, Luis, Montolio, Marisol, Soblechero-Martin, Patricia, Arechavala-Gomeza, Virginia, Franco, Diego, Aranega, Amelia Eva
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9463180/
https://www.ncbi.nlm.nih.gov/pubmed/36159592
http://dx.doi.org/10.1016/j.omtn.2022.08.025
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author Rodriguez-Outeiriño, Lara
Hernandez-Torres, Francisco
Ramirez de Acuña, Felicitas
Rastrojo, Alberto
Creus, Carlota
Carvajal, Alejandra
Salmeron, Luis
Montolio, Marisol
Soblechero-Martin, Patricia
Arechavala-Gomeza, Virginia
Franco, Diego
Aranega, Amelia Eva
author_facet Rodriguez-Outeiriño, Lara
Hernandez-Torres, Francisco
Ramirez de Acuña, Felicitas
Rastrojo, Alberto
Creus, Carlota
Carvajal, Alejandra
Salmeron, Luis
Montolio, Marisol
Soblechero-Martin, Patricia
Arechavala-Gomeza, Virginia
Franco, Diego
Aranega, Amelia Eva
author_sort Rodriguez-Outeiriño, Lara
collection PubMed
description Satellite cells (SCs), muscle stem cells, display functional heterogeneity, and dramatic changes linked to their regenerative capabilities are associated with muscle-wasting diseases. SC behavior is related to endogenous expression of the myogenic transcription factor MYF5 and the propensity to enter into the cell cycle. Here, we report a role for miR-106b reinforcing MYF5 inhibition and blocking cell proliferation in a subset of highly quiescent SC population. miR-106b down-regulation occurs during SC activation and is required for proper muscle repair. In addition, miR-106b is increased in dystrophic mice, and intramuscular injection of antimiR in injured mdx mice enhances muscle regeneration promoting transcriptional changes involved in skeletal muscle differentiation. miR-106b inhibition promotes the engraftment of human muscle stem cells. Furthermore, miR-106b is also high in human dystrophic muscle stem cells and its inhibition improves intrinsic proliferative defects and increases their myogenic potential. This study demonstrates that miR-106b is an important modulator of SC quiescence, and that miR-106b may be a new target to develop therapeutic strategies to promote muscle regeneration improving the regenerative capabilities of injured dystrophic muscle.
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spelling pubmed-94631802022-09-22 miR-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured Duchenne dystrophic muscle Rodriguez-Outeiriño, Lara Hernandez-Torres, Francisco Ramirez de Acuña, Felicitas Rastrojo, Alberto Creus, Carlota Carvajal, Alejandra Salmeron, Luis Montolio, Marisol Soblechero-Martin, Patricia Arechavala-Gomeza, Virginia Franco, Diego Aranega, Amelia Eva Mol Ther Nucleic Acids Original Article Satellite cells (SCs), muscle stem cells, display functional heterogeneity, and dramatic changes linked to their regenerative capabilities are associated with muscle-wasting diseases. SC behavior is related to endogenous expression of the myogenic transcription factor MYF5 and the propensity to enter into the cell cycle. Here, we report a role for miR-106b reinforcing MYF5 inhibition and blocking cell proliferation in a subset of highly quiescent SC population. miR-106b down-regulation occurs during SC activation and is required for proper muscle repair. In addition, miR-106b is increased in dystrophic mice, and intramuscular injection of antimiR in injured mdx mice enhances muscle regeneration promoting transcriptional changes involved in skeletal muscle differentiation. miR-106b inhibition promotes the engraftment of human muscle stem cells. Furthermore, miR-106b is also high in human dystrophic muscle stem cells and its inhibition improves intrinsic proliferative defects and increases their myogenic potential. This study demonstrates that miR-106b is an important modulator of SC quiescence, and that miR-106b may be a new target to develop therapeutic strategies to promote muscle regeneration improving the regenerative capabilities of injured dystrophic muscle. American Society of Gene & Cell Therapy 2022-08-20 /pmc/articles/PMC9463180/ /pubmed/36159592 http://dx.doi.org/10.1016/j.omtn.2022.08.025 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Rodriguez-Outeiriño, Lara
Hernandez-Torres, Francisco
Ramirez de Acuña, Felicitas
Rastrojo, Alberto
Creus, Carlota
Carvajal, Alejandra
Salmeron, Luis
Montolio, Marisol
Soblechero-Martin, Patricia
Arechavala-Gomeza, Virginia
Franco, Diego
Aranega, Amelia Eva
miR-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured Duchenne dystrophic muscle
title miR-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured Duchenne dystrophic muscle
title_full miR-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured Duchenne dystrophic muscle
title_fullStr miR-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured Duchenne dystrophic muscle
title_full_unstemmed miR-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured Duchenne dystrophic muscle
title_short miR-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured Duchenne dystrophic muscle
title_sort mir-106b is a novel target to promote muscle regeneration and restore satellite stem cell function in injured duchenne dystrophic muscle
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9463180/
https://www.ncbi.nlm.nih.gov/pubmed/36159592
http://dx.doi.org/10.1016/j.omtn.2022.08.025
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