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Aged cells in human skeletal muscle after resistance exercise

It remains unclear how exercise, as an entropic event, brings benefit against human aging. Here we examined longitudinal changes of p16(Ink4a+) senescent cells in skeletal muscle of young men (aged 22.5±1.7 y) before and after resistance exercise (0 h and 48 h) with multiple biopsies at two differen...

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Autores principales: Yang, Chi, Jiao, Ying, Wei, Bing, Yang, Zeyi, Wu, Jin-Fu, Jensen, Jorgen, Jean, Wei-Horng, Huang, Chih-Yang, Kuo, Chia-Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6046228/
https://www.ncbi.nlm.nih.gov/pubmed/29953414
http://dx.doi.org/10.18632/aging.101472
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author Yang, Chi
Jiao, Ying
Wei, Bing
Yang, Zeyi
Wu, Jin-Fu
Jensen, Jorgen
Jean, Wei-Horng
Huang, Chih-Yang
Kuo, Chia-Hua
author_facet Yang, Chi
Jiao, Ying
Wei, Bing
Yang, Zeyi
Wu, Jin-Fu
Jensen, Jorgen
Jean, Wei-Horng
Huang, Chih-Yang
Kuo, Chia-Hua
author_sort Yang, Chi
collection PubMed
description It remains unclear how exercise, as an entropic event, brings benefit against human aging. Here we examined longitudinal changes of p16(Ink4a+) senescent cells in skeletal muscle of young men (aged 22.5±1.7 y) before and after resistance exercise (0 h and 48 h) with multiple biopsies at two different protein availabilities: low protein (14%) and isocaloric high protein (44%) supplemented conditions. Immunohistochemistry analysis of muscle cross-sections using p16(Ink4a) and CD34 antibodies confirmed that the detected senescent cells were endothelial progenitor cells. Leukocyte infiltration into skeletal muscle increased during resistance exercise. The senescent cells in muscle decreased (-48%, P < 0.01) after exercise for 48 h. Low protein supplementation resulted in greater infiltrations of both CD68(+) phagocytic macrophage and leukocyte, further decreased p16(Ink4a+) senescent cells (-73%, P < 0.001), and delayed increases in regenerative CD163(+) macrophage in skeletal muscle, compared with high protein supplemented condition. Significant gain in muscle mass after 12 weeks of training occurred only under high protein supplemented condition. Conclusion: Rapid senescent cell clearance of human skeletal muscle during resistance exercise seems to associate with enhanced in situ phagocytosis. High protein availability accelerates resolution of muscle inflammation and promotes muscle increment after training.
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spelling pubmed-60462282018-07-17 Aged cells in human skeletal muscle after resistance exercise Yang, Chi Jiao, Ying Wei, Bing Yang, Zeyi Wu, Jin-Fu Jensen, Jorgen Jean, Wei-Horng Huang, Chih-Yang Kuo, Chia-Hua Aging (Albany NY) Research Paper It remains unclear how exercise, as an entropic event, brings benefit against human aging. Here we examined longitudinal changes of p16(Ink4a+) senescent cells in skeletal muscle of young men (aged 22.5±1.7 y) before and after resistance exercise (0 h and 48 h) with multiple biopsies at two different protein availabilities: low protein (14%) and isocaloric high protein (44%) supplemented conditions. Immunohistochemistry analysis of muscle cross-sections using p16(Ink4a) and CD34 antibodies confirmed that the detected senescent cells were endothelial progenitor cells. Leukocyte infiltration into skeletal muscle increased during resistance exercise. The senescent cells in muscle decreased (-48%, P < 0.01) after exercise for 48 h. Low protein supplementation resulted in greater infiltrations of both CD68(+) phagocytic macrophage and leukocyte, further decreased p16(Ink4a+) senescent cells (-73%, P < 0.001), and delayed increases in regenerative CD163(+) macrophage in skeletal muscle, compared with high protein supplemented condition. Significant gain in muscle mass after 12 weeks of training occurred only under high protein supplemented condition. Conclusion: Rapid senescent cell clearance of human skeletal muscle during resistance exercise seems to associate with enhanced in situ phagocytosis. High protein availability accelerates resolution of muscle inflammation and promotes muscle increment after training. Impact Journals 2018-06-27 /pmc/articles/PMC6046228/ /pubmed/29953414 http://dx.doi.org/10.18632/aging.101472 Text en Copyright © 2018 Yang et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC BY) 3.0 License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Yang, Chi
Jiao, Ying
Wei, Bing
Yang, Zeyi
Wu, Jin-Fu
Jensen, Jorgen
Jean, Wei-Horng
Huang, Chih-Yang
Kuo, Chia-Hua
Aged cells in human skeletal muscle after resistance exercise
title Aged cells in human skeletal muscle after resistance exercise
title_full Aged cells in human skeletal muscle after resistance exercise
title_fullStr Aged cells in human skeletal muscle after resistance exercise
title_full_unstemmed Aged cells in human skeletal muscle after resistance exercise
title_short Aged cells in human skeletal muscle after resistance exercise
title_sort aged cells in human skeletal muscle after resistance exercise
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6046228/
https://www.ncbi.nlm.nih.gov/pubmed/29953414
http://dx.doi.org/10.18632/aging.101472
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