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Overweight in the Elderly Induces a Switch in Energy Metabolism that Undermines Muscle Integrity

Aging is characterized by a progressive loss of skeletal muscle mass and function (sarcopenia). Obesity exacerbates age-related decline and lead to frailty. Skeletal muscle fat infiltration increases with aging and seems to be crucial for the progression of sarcopenia. Additionally, skeletal muscle...

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Autores principales: Potes, Yaiza, Pérez-Martinez, Zulema, Bermejo-Millo, Juan C., Rubio-Gonzalez, Adrian, Fernandez-Fernández, María, Bermudez, Manuel, Arche, Jose M., Solano, Juan J., Boga, Jose A., Oliván, Mamen, Caballero, Beatriz, Vega-Naredo, Ignacio, Coto-Montes, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: JKL International LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6457058/
https://www.ncbi.nlm.nih.gov/pubmed/31011474
http://dx.doi.org/10.14336/AD.2018.0430
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author Potes, Yaiza
Pérez-Martinez, Zulema
Bermejo-Millo, Juan C.
Rubio-Gonzalez, Adrian
Fernandez-Fernández, María
Bermudez, Manuel
Arche, Jose M.
Solano, Juan J.
Boga, Jose A.
Oliván, Mamen
Caballero, Beatriz
Vega-Naredo, Ignacio
Coto-Montes, Ana
author_facet Potes, Yaiza
Pérez-Martinez, Zulema
Bermejo-Millo, Juan C.
Rubio-Gonzalez, Adrian
Fernandez-Fernández, María
Bermudez, Manuel
Arche, Jose M.
Solano, Juan J.
Boga, Jose A.
Oliván, Mamen
Caballero, Beatriz
Vega-Naredo, Ignacio
Coto-Montes, Ana
author_sort Potes, Yaiza
collection PubMed
description Aging is characterized by a progressive loss of skeletal muscle mass and function (sarcopenia). Obesity exacerbates age-related decline and lead to frailty. Skeletal muscle fat infiltration increases with aging and seems to be crucial for the progression of sarcopenia. Additionally, skeletal muscle plasticity modulates metabolic adaptation to different pathophysiological situations. Thus, cellular bioenergetics and mitochondrial profile were studied in the skeletal muscle of overweight aged people without reaching obesity to prevent this extreme situation. Overweight aged muscle lacked ATP production, as indicated by defects in the phosphagen system, glycolysis and especially mostly by oxidative phosphorylation metabolic pathway. Overweight subjects exhibited an inhibition of mitophagy that was linked to an increase in mitochondrial biogenesis that underlies the accumulation of dysfunctional mitochondria and encourages the onset of sarcopenia. As a strategy to maintain cellular homeostasis, overweight subjects experienced a metabolic switch from oxidative to lactic acid fermentation metabolism, which allows continued ATP production under mitochondrial dysfunction, but without reaching physiological aged basal levels. This ATP depletion induced early signs of impaired contractile function and a decline in skeletal muscle structural integrity, evidenced by lower levels of filamin C. Our findings reveal the main effector pathways at an early stage of obesity and highlight the importance of mitochondrial metabolism in overweight and obese individuals. Exploiting mitochondrial profiles for therapeutic purposes in humans is an ambitious strategy for treating muscle impairment diseases.
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spelling pubmed-64570582019-04-22 Overweight in the Elderly Induces a Switch in Energy Metabolism that Undermines Muscle Integrity Potes, Yaiza Pérez-Martinez, Zulema Bermejo-Millo, Juan C. Rubio-Gonzalez, Adrian Fernandez-Fernández, María Bermudez, Manuel Arche, Jose M. Solano, Juan J. Boga, Jose A. Oliván, Mamen Caballero, Beatriz Vega-Naredo, Ignacio Coto-Montes, Ana Aging Dis Original Article Aging is characterized by a progressive loss of skeletal muscle mass and function (sarcopenia). Obesity exacerbates age-related decline and lead to frailty. Skeletal muscle fat infiltration increases with aging and seems to be crucial for the progression of sarcopenia. Additionally, skeletal muscle plasticity modulates metabolic adaptation to different pathophysiological situations. Thus, cellular bioenergetics and mitochondrial profile were studied in the skeletal muscle of overweight aged people without reaching obesity to prevent this extreme situation. Overweight aged muscle lacked ATP production, as indicated by defects in the phosphagen system, glycolysis and especially mostly by oxidative phosphorylation metabolic pathway. Overweight subjects exhibited an inhibition of mitophagy that was linked to an increase in mitochondrial biogenesis that underlies the accumulation of dysfunctional mitochondria and encourages the onset of sarcopenia. As a strategy to maintain cellular homeostasis, overweight subjects experienced a metabolic switch from oxidative to lactic acid fermentation metabolism, which allows continued ATP production under mitochondrial dysfunction, but without reaching physiological aged basal levels. This ATP depletion induced early signs of impaired contractile function and a decline in skeletal muscle structural integrity, evidenced by lower levels of filamin C. Our findings reveal the main effector pathways at an early stage of obesity and highlight the importance of mitochondrial metabolism in overweight and obese individuals. Exploiting mitochondrial profiles for therapeutic purposes in humans is an ambitious strategy for treating muscle impairment diseases. JKL International LLC 2019-04-01 /pmc/articles/PMC6457058/ /pubmed/31011474 http://dx.doi.org/10.14336/AD.2018.0430 Text en Copyright: © 2019 Potes 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 Original Article
Potes, Yaiza
Pérez-Martinez, Zulema
Bermejo-Millo, Juan C.
Rubio-Gonzalez, Adrian
Fernandez-Fernández, María
Bermudez, Manuel
Arche, Jose M.
Solano, Juan J.
Boga, Jose A.
Oliván, Mamen
Caballero, Beatriz
Vega-Naredo, Ignacio
Coto-Montes, Ana
Overweight in the Elderly Induces a Switch in Energy Metabolism that Undermines Muscle Integrity
title Overweight in the Elderly Induces a Switch in Energy Metabolism that Undermines Muscle Integrity
title_full Overweight in the Elderly Induces a Switch in Energy Metabolism that Undermines Muscle Integrity
title_fullStr Overweight in the Elderly Induces a Switch in Energy Metabolism that Undermines Muscle Integrity
title_full_unstemmed Overweight in the Elderly Induces a Switch in Energy Metabolism that Undermines Muscle Integrity
title_short Overweight in the Elderly Induces a Switch in Energy Metabolism that Undermines Muscle Integrity
title_sort overweight in the elderly induces a switch in energy metabolism that undermines muscle integrity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6457058/
https://www.ncbi.nlm.nih.gov/pubmed/31011474
http://dx.doi.org/10.14336/AD.2018.0430
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