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Disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment

Muscle inflammation and fibrosis underlie disuse‐related complications and may contribute to impaired muscle recovery in aging. Cellular senescence is an emerging link between inflammation, extracellular matrix (ECM) remodeling and poor muscle recovery after disuse. In rodents, metformin has been sh...

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Autores principales: Petrocelli, Jonathan J., McKenzie, Alec I., de Hart, Naomi M. M. P., Reidy, Paul T., Mahmassani, Ziad S., Keeble, Alexander R., Kaput, Katie L., Wahl, Matthew P., Rondina, Matthew T., Marcus, Robin L., Welt, Corrine K., Holland, William L., Funai, Katsuhiko, Fry, Christopher S., Drummond, Micah J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10652302/
https://www.ncbi.nlm.nih.gov/pubmed/37486024
http://dx.doi.org/10.1111/acel.13936
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author Petrocelli, Jonathan J.
McKenzie, Alec I.
de Hart, Naomi M. M. P.
Reidy, Paul T.
Mahmassani, Ziad S.
Keeble, Alexander R.
Kaput, Katie L.
Wahl, Matthew P.
Rondina, Matthew T.
Marcus, Robin L.
Welt, Corrine K.
Holland, William L.
Funai, Katsuhiko
Fry, Christopher S.
Drummond, Micah J.
author_facet Petrocelli, Jonathan J.
McKenzie, Alec I.
de Hart, Naomi M. M. P.
Reidy, Paul T.
Mahmassani, Ziad S.
Keeble, Alexander R.
Kaput, Katie L.
Wahl, Matthew P.
Rondina, Matthew T.
Marcus, Robin L.
Welt, Corrine K.
Holland, William L.
Funai, Katsuhiko
Fry, Christopher S.
Drummond, Micah J.
author_sort Petrocelli, Jonathan J.
collection PubMed
description Muscle inflammation and fibrosis underlie disuse‐related complications and may contribute to impaired muscle recovery in aging. Cellular senescence is an emerging link between inflammation, extracellular matrix (ECM) remodeling and poor muscle recovery after disuse. In rodents, metformin has been shown to prevent cellular senescence/senescent associated secretory phenotype (SASP), inflammation, and fibrosis making it a potentially practical therapeutic solution. Thus, the purpose of this study was to determine in older adults if metformin monotherapy during bed rest could reduce muscle fibrosis and cellular senescence/SASP during the re‐ambulation period. A two‐arm controlled trial was utilized in healthy male and female older adults (n = 20; BMI: <30, age: 60 years+) randomized into either placebo or metformin treatment during a two‐week run‐in and 5 days of bedrest followed by metformin withdrawal during 7 days of recovery. We found that metformin‐treated individuals had less type‐I myofiber atrophy during disuse, reduced pro‐inflammatory transcriptional profiles, and lower muscle collagen deposition during recovery. Collagen content and myofiber size corresponded to reduced whole muscle cellular senescence and SASP markers. Moreover, metformin treatment reduced primary muscle resident fibro‐adipogenic progenitors (FAPs) senescent markers and promoted a shift in fibroblast fate to be less myofibroblast‐like. Together, these results suggest that metformin pre‐treatment improved ECM remodeling after disuse in older adults by possibly altering cellular senescence and SASP in skeletal muscle and in FAPs.
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spelling pubmed-106523022023-07-24 Disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment Petrocelli, Jonathan J. McKenzie, Alec I. de Hart, Naomi M. M. P. Reidy, Paul T. Mahmassani, Ziad S. Keeble, Alexander R. Kaput, Katie L. Wahl, Matthew P. Rondina, Matthew T. Marcus, Robin L. Welt, Corrine K. Holland, William L. Funai, Katsuhiko Fry, Christopher S. Drummond, Micah J. Aging Cell Research Articles Muscle inflammation and fibrosis underlie disuse‐related complications and may contribute to impaired muscle recovery in aging. Cellular senescence is an emerging link between inflammation, extracellular matrix (ECM) remodeling and poor muscle recovery after disuse. In rodents, metformin has been shown to prevent cellular senescence/senescent associated secretory phenotype (SASP), inflammation, and fibrosis making it a potentially practical therapeutic solution. Thus, the purpose of this study was to determine in older adults if metformin monotherapy during bed rest could reduce muscle fibrosis and cellular senescence/SASP during the re‐ambulation period. A two‐arm controlled trial was utilized in healthy male and female older adults (n = 20; BMI: <30, age: 60 years+) randomized into either placebo or metformin treatment during a two‐week run‐in and 5 days of bedrest followed by metformin withdrawal during 7 days of recovery. We found that metformin‐treated individuals had less type‐I myofiber atrophy during disuse, reduced pro‐inflammatory transcriptional profiles, and lower muscle collagen deposition during recovery. Collagen content and myofiber size corresponded to reduced whole muscle cellular senescence and SASP markers. Moreover, metformin treatment reduced primary muscle resident fibro‐adipogenic progenitors (FAPs) senescent markers and promoted a shift in fibroblast fate to be less myofibroblast‐like. Together, these results suggest that metformin pre‐treatment improved ECM remodeling after disuse in older adults by possibly altering cellular senescence and SASP in skeletal muscle and in FAPs. John Wiley and Sons Inc. 2023-07-24 /pmc/articles/PMC10652302/ /pubmed/37486024 http://dx.doi.org/10.1111/acel.13936 Text en © 2023 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Petrocelli, Jonathan J.
McKenzie, Alec I.
de Hart, Naomi M. M. P.
Reidy, Paul T.
Mahmassani, Ziad S.
Keeble, Alexander R.
Kaput, Katie L.
Wahl, Matthew P.
Rondina, Matthew T.
Marcus, Robin L.
Welt, Corrine K.
Holland, William L.
Funai, Katsuhiko
Fry, Christopher S.
Drummond, Micah J.
Disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment
title Disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment
title_full Disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment
title_fullStr Disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment
title_full_unstemmed Disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment
title_short Disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment
title_sort disuse‐induced muscle fibrosis, cellular senescence, and senescence‐associated secretory phenotype in older adults are alleviated during re‐ambulation with metformin pre‐treatment
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10652302/
https://www.ncbi.nlm.nih.gov/pubmed/37486024
http://dx.doi.org/10.1111/acel.13936
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