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Hyperphosphatemia Promotes Senescence of Myoblasts by Impairing Autophagy Through Ilk Overexpression, A Possible Mechanism Involved in Sarcopenia

In mammalians, advancing age is associated with sarcopenia, the progressive and involuntary loss of muscle mass and strength. Hyperphosphatemia is an aging-related condition involved in several pathologies. The aim of this work was to assess whether hyperphosphatemia plays a role in the age-related...

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Autores principales: Sosa, Patricia, Alcalde-Estevez, Elena, Plaza, Patricia, Troyano, Nuria, Alonso, Cristina, Martínez-Arias, Laura, Evelem de Melo Aroeira, Andresa, Rodriguez-Puyol, Diego, Olmos, Gemma, López-Ongil, Susana, Ruíz-Torres, María P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: JKL International LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6147593/
https://www.ncbi.nlm.nih.gov/pubmed/30271655
http://dx.doi.org/10.14336/AD.2017.1214
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author Sosa, Patricia
Alcalde-Estevez, Elena
Plaza, Patricia
Troyano, Nuria
Alonso, Cristina
Martínez-Arias, Laura
Evelem de Melo Aroeira, Andresa
Rodriguez-Puyol, Diego
Olmos, Gemma
López-Ongil, Susana
Ruíz-Torres, María P.
author_facet Sosa, Patricia
Alcalde-Estevez, Elena
Plaza, Patricia
Troyano, Nuria
Alonso, Cristina
Martínez-Arias, Laura
Evelem de Melo Aroeira, Andresa
Rodriguez-Puyol, Diego
Olmos, Gemma
López-Ongil, Susana
Ruíz-Torres, María P.
author_sort Sosa, Patricia
collection PubMed
description In mammalians, advancing age is associated with sarcopenia, the progressive and involuntary loss of muscle mass and strength. Hyperphosphatemia is an aging-related condition involved in several pathologies. The aim of this work was to assess whether hyperphosphatemia plays a role in the age-related loss of mass muscle and strength by inducing cellular senescence in murine myoblasts and to explore the intracellular mechanism involved in this effect. Cultured mouse C(2)C(12) cells were treated with 10 mM beta-glycerophosphate (BGP] at different periods of time to induce hyperphosphatemia. BGP promoted cellular senescence after 24 h of treatment, assessed by the increased expression of p53, acetylated-p53 and p21 and senescence associated β-galactosidase activity. In parallel, BGP increased ILK expression and activity, followed by mTOR activation and autophagy reduction. Knocking-down ILK expression increased autophagy and protected cells from senescence induced by hyperphosphatemia. BGP also reduced the proliferative capacity of cultured myoblasts. Old mice (24-months-old] presented higher serum phosphate concentration, lower forelimb strength, higher expression of p53 and ILK and less autophagy in vastus muscle than young mice (5-months-old]. In conclusion, we propose that hyperphosphatemia induces senescence in cultured myoblasts through ILK overexpression, reducing their proliferative capacity, which could be a mechanism involved in the development of sarcopenia, since old mice showed loss of muscular strength correlated with high serum phosphate concentration and increased levels of ILK and p53.
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spelling pubmed-61475932018-10-01 Hyperphosphatemia Promotes Senescence of Myoblasts by Impairing Autophagy Through Ilk Overexpression, A Possible Mechanism Involved in Sarcopenia Sosa, Patricia Alcalde-Estevez, Elena Plaza, Patricia Troyano, Nuria Alonso, Cristina Martínez-Arias, Laura Evelem de Melo Aroeira, Andresa Rodriguez-Puyol, Diego Olmos, Gemma López-Ongil, Susana Ruíz-Torres, María P. Aging Dis Orginal Article In mammalians, advancing age is associated with sarcopenia, the progressive and involuntary loss of muscle mass and strength. Hyperphosphatemia is an aging-related condition involved in several pathologies. The aim of this work was to assess whether hyperphosphatemia plays a role in the age-related loss of mass muscle and strength by inducing cellular senescence in murine myoblasts and to explore the intracellular mechanism involved in this effect. Cultured mouse C(2)C(12) cells were treated with 10 mM beta-glycerophosphate (BGP] at different periods of time to induce hyperphosphatemia. BGP promoted cellular senescence after 24 h of treatment, assessed by the increased expression of p53, acetylated-p53 and p21 and senescence associated β-galactosidase activity. In parallel, BGP increased ILK expression and activity, followed by mTOR activation and autophagy reduction. Knocking-down ILK expression increased autophagy and protected cells from senescence induced by hyperphosphatemia. BGP also reduced the proliferative capacity of cultured myoblasts. Old mice (24-months-old] presented higher serum phosphate concentration, lower forelimb strength, higher expression of p53 and ILK and less autophagy in vastus muscle than young mice (5-months-old]. In conclusion, we propose that hyperphosphatemia induces senescence in cultured myoblasts through ILK overexpression, reducing their proliferative capacity, which could be a mechanism involved in the development of sarcopenia, since old mice showed loss of muscular strength correlated with high serum phosphate concentration and increased levels of ILK and p53. JKL International LLC 2018-10-01 /pmc/articles/PMC6147593/ /pubmed/30271655 http://dx.doi.org/10.14336/AD.2017.1214 Text en Copyright: © 2018 Sosa et al. http://creativecommons.org/licenses/by/2.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Orginal Article
Sosa, Patricia
Alcalde-Estevez, Elena
Plaza, Patricia
Troyano, Nuria
Alonso, Cristina
Martínez-Arias, Laura
Evelem de Melo Aroeira, Andresa
Rodriguez-Puyol, Diego
Olmos, Gemma
López-Ongil, Susana
Ruíz-Torres, María P.
Hyperphosphatemia Promotes Senescence of Myoblasts by Impairing Autophagy Through Ilk Overexpression, A Possible Mechanism Involved in Sarcopenia
title Hyperphosphatemia Promotes Senescence of Myoblasts by Impairing Autophagy Through Ilk Overexpression, A Possible Mechanism Involved in Sarcopenia
title_full Hyperphosphatemia Promotes Senescence of Myoblasts by Impairing Autophagy Through Ilk Overexpression, A Possible Mechanism Involved in Sarcopenia
title_fullStr Hyperphosphatemia Promotes Senescence of Myoblasts by Impairing Autophagy Through Ilk Overexpression, A Possible Mechanism Involved in Sarcopenia
title_full_unstemmed Hyperphosphatemia Promotes Senescence of Myoblasts by Impairing Autophagy Through Ilk Overexpression, A Possible Mechanism Involved in Sarcopenia
title_short Hyperphosphatemia Promotes Senescence of Myoblasts by Impairing Autophagy Through Ilk Overexpression, A Possible Mechanism Involved in Sarcopenia
title_sort hyperphosphatemia promotes senescence of myoblasts by impairing autophagy through ilk overexpression, a possible mechanism involved in sarcopenia
topic Orginal Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6147593/
https://www.ncbi.nlm.nih.gov/pubmed/30271655
http://dx.doi.org/10.14336/AD.2017.1214
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