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Improvement of Endurance Based on Muscle Fiber-Type Composition by Treatment with Dietary Apple Polyphenols in Rats

A recent study demonstrated a positive effect of apple polyphenol (APP) intake on muscle endurance of young-adult animals. While an enhancement of lipid metabolism may be responsible, in part, for the improvement, the contributing mechanisms still need clarification. Here we show that an 8-week inta...

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Autores principales: Mizunoya, Wataru, Miyahara, Hideo, Okamoto, Shinpei, Akahoshi, Mariko, Suzuki, Takahiro, Do, Mai-Khoi Q., Ohtsubo, Hideaki, Komiya, Yusuke, Lan, Mu, Waga, Toshiaki, Iwata, Akira, Nakazato, Koichi, Ikeuchi, Yoshihide, Anderson, Judy E., Tatsumi, Ryuichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4519157/
https://www.ncbi.nlm.nih.gov/pubmed/26222548
http://dx.doi.org/10.1371/journal.pone.0134303
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author Mizunoya, Wataru
Miyahara, Hideo
Okamoto, Shinpei
Akahoshi, Mariko
Suzuki, Takahiro
Do, Mai-Khoi Q.
Ohtsubo, Hideaki
Komiya, Yusuke
Lan, Mu
Waga, Toshiaki
Iwata, Akira
Nakazato, Koichi
Ikeuchi, Yoshihide
Anderson, Judy E.
Tatsumi, Ryuichi
author_facet Mizunoya, Wataru
Miyahara, Hideo
Okamoto, Shinpei
Akahoshi, Mariko
Suzuki, Takahiro
Do, Mai-Khoi Q.
Ohtsubo, Hideaki
Komiya, Yusuke
Lan, Mu
Waga, Toshiaki
Iwata, Akira
Nakazato, Koichi
Ikeuchi, Yoshihide
Anderson, Judy E.
Tatsumi, Ryuichi
author_sort Mizunoya, Wataru
collection PubMed
description A recent study demonstrated a positive effect of apple polyphenol (APP) intake on muscle endurance of young-adult animals. While an enhancement of lipid metabolism may be responsible, in part, for the improvement, the contributing mechanisms still need clarification. Here we show that an 8-week intake of 5% (w/w) APP in the diet, up-regulates two features related to fiber type: the ratio of myosin heavy chain (MyHC) type IIx/IIb and myoglobin protein expression in plantaris muscle of 9-week-old male Fischer F344 rats compared to pair-fed controls (P < 0.05). Results were demonstrated by our SDS-PAGE system specialized for MyHC isoform separation and western blotting of whole muscles. Animal-growth profiles (food intake, body-weight gain, and internal-organ weights) did not differ between the control and 5% APP-fed animals (n = 9/group). Findings may account for the increase in fatigue resistance of lower hind limb muscles, as evidenced by a slower decline in the maximum isometric planter-flexion torque generated by a 100-s train of electrical stimulation of the tibial nerve. Additionally, the fatigue resistance was lower after 8 weeks of a 0.5% APP diet than after 5% APP, supporting an APP-dose dependency of the shift in fiber-type composition. Therefore, the present study highlights a promising contribution of dietary APP intake to increasing endurance based on fiber-type composition in rat muscle. Results may help in developing a novel strategy for application in animal sciences, and human sports and age-related health sciences.
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spelling pubmed-45191572015-07-31 Improvement of Endurance Based on Muscle Fiber-Type Composition by Treatment with Dietary Apple Polyphenols in Rats Mizunoya, Wataru Miyahara, Hideo Okamoto, Shinpei Akahoshi, Mariko Suzuki, Takahiro Do, Mai-Khoi Q. Ohtsubo, Hideaki Komiya, Yusuke Lan, Mu Waga, Toshiaki Iwata, Akira Nakazato, Koichi Ikeuchi, Yoshihide Anderson, Judy E. Tatsumi, Ryuichi PLoS One Research Article A recent study demonstrated a positive effect of apple polyphenol (APP) intake on muscle endurance of young-adult animals. While an enhancement of lipid metabolism may be responsible, in part, for the improvement, the contributing mechanisms still need clarification. Here we show that an 8-week intake of 5% (w/w) APP in the diet, up-regulates two features related to fiber type: the ratio of myosin heavy chain (MyHC) type IIx/IIb and myoglobin protein expression in plantaris muscle of 9-week-old male Fischer F344 rats compared to pair-fed controls (P < 0.05). Results were demonstrated by our SDS-PAGE system specialized for MyHC isoform separation and western blotting of whole muscles. Animal-growth profiles (food intake, body-weight gain, and internal-organ weights) did not differ between the control and 5% APP-fed animals (n = 9/group). Findings may account for the increase in fatigue resistance of lower hind limb muscles, as evidenced by a slower decline in the maximum isometric planter-flexion torque generated by a 100-s train of electrical stimulation of the tibial nerve. Additionally, the fatigue resistance was lower after 8 weeks of a 0.5% APP diet than after 5% APP, supporting an APP-dose dependency of the shift in fiber-type composition. Therefore, the present study highlights a promising contribution of dietary APP intake to increasing endurance based on fiber-type composition in rat muscle. Results may help in developing a novel strategy for application in animal sciences, and human sports and age-related health sciences. Public Library of Science 2015-07-29 /pmc/articles/PMC4519157/ /pubmed/26222548 http://dx.doi.org/10.1371/journal.pone.0134303 Text en © 2015 Mizunoya et al http://creativecommons.org/licenses/by/4.0/ 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 the original author and source are properly credited.
spellingShingle Research Article
Mizunoya, Wataru
Miyahara, Hideo
Okamoto, Shinpei
Akahoshi, Mariko
Suzuki, Takahiro
Do, Mai-Khoi Q.
Ohtsubo, Hideaki
Komiya, Yusuke
Lan, Mu
Waga, Toshiaki
Iwata, Akira
Nakazato, Koichi
Ikeuchi, Yoshihide
Anderson, Judy E.
Tatsumi, Ryuichi
Improvement of Endurance Based on Muscle Fiber-Type Composition by Treatment with Dietary Apple Polyphenols in Rats
title Improvement of Endurance Based on Muscle Fiber-Type Composition by Treatment with Dietary Apple Polyphenols in Rats
title_full Improvement of Endurance Based on Muscle Fiber-Type Composition by Treatment with Dietary Apple Polyphenols in Rats
title_fullStr Improvement of Endurance Based on Muscle Fiber-Type Composition by Treatment with Dietary Apple Polyphenols in Rats
title_full_unstemmed Improvement of Endurance Based on Muscle Fiber-Type Composition by Treatment with Dietary Apple Polyphenols in Rats
title_short Improvement of Endurance Based on Muscle Fiber-Type Composition by Treatment with Dietary Apple Polyphenols in Rats
title_sort improvement of endurance based on muscle fiber-type composition by treatment with dietary apple polyphenols in rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4519157/
https://www.ncbi.nlm.nih.gov/pubmed/26222548
http://dx.doi.org/10.1371/journal.pone.0134303
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