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Effects of Whey, Soy or Leucine Supplementation with 12 Weeks of Resistance Training on Strength, Body Composition, and Skeletal Muscle and Adipose Tissue Histological Attributes in College-Aged Males

We sought to determine the effects of L-leucine (LEU) or different protein supplements standardized to LEU (~3.0 g/serving) on changes in body composition, strength, and histological attributes in skeletal muscle and adipose tissue. Seventy-five untrained, college-aged males (mean ± standard error o...

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Autores principales: Mobley, C. Brooks, Haun, Cody T., Roberson, Paul A., Mumford, Petey W., Romero, Matthew A., Kephart, Wesley C., Anderson, Richard G., Vann, Christopher G., Osburn, Shelby C., Pledge, Coree D., Martin, Jeffrey S., Young, Kaelin C., Goodlett, Michael D., Pascoe, David D., Lockwood, Christopher M., Roberts, Michael D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5622732/
https://www.ncbi.nlm.nih.gov/pubmed/28869573
http://dx.doi.org/10.3390/nu9090972
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author Mobley, C. Brooks
Haun, Cody T.
Roberson, Paul A.
Mumford, Petey W.
Romero, Matthew A.
Kephart, Wesley C.
Anderson, Richard G.
Vann, Christopher G.
Osburn, Shelby C.
Pledge, Coree D.
Martin, Jeffrey S.
Young, Kaelin C.
Goodlett, Michael D.
Pascoe, David D.
Lockwood, Christopher M.
Roberts, Michael D.
author_facet Mobley, C. Brooks
Haun, Cody T.
Roberson, Paul A.
Mumford, Petey W.
Romero, Matthew A.
Kephart, Wesley C.
Anderson, Richard G.
Vann, Christopher G.
Osburn, Shelby C.
Pledge, Coree D.
Martin, Jeffrey S.
Young, Kaelin C.
Goodlett, Michael D.
Pascoe, David D.
Lockwood, Christopher M.
Roberts, Michael D.
author_sort Mobley, C. Brooks
collection PubMed
description We sought to determine the effects of L-leucine (LEU) or different protein supplements standardized to LEU (~3.0 g/serving) on changes in body composition, strength, and histological attributes in skeletal muscle and adipose tissue. Seventy-five untrained, college-aged males (mean ± standard error of the mean (SE); age = 21 ± 1 years, body mass = 79.2 ± 0.3 kg) were randomly assigned to an isocaloric, lipid-, and organoleptically-matched maltodextrin placebo (PLA, n = 15), LEU (n = 14), whey protein concentrate (WPC, n = 17), whey protein hydrolysate (WPH, n = 14), or soy protein concentrate (SPC, n = 15) group. Participants performed whole-body resistance training three days per week for 12 weeks while consuming supplements twice daily. Skeletal muscle and subcutaneous (SQ) fat biopsies were obtained at baseline (T1) and ~72 h following the last day of training (T39). Tissue samples were analyzed for changes in type I and II fiber cross sectional area (CSA), non-fiber specific satellite cell count, and SQ adipocyte CSA. On average, all supplement groups including PLA exhibited similar training volumes and experienced statistically similar increases in total body skeletal muscle mass determined by dual X-ray absorptiometry (+2.2 kg; time p = 0.024) and type I and II fiber CSA increases (+394 μm(2) and +927 μm(2); time p < 0.001 and 0.024, respectively). Notably, all groups reported increasing Calorie intakes ~600–800 kcal/day from T1 to T39 (time p < 0.001), and all groups consumed at least 1.1 g/kg/day of protein at T1 and 1.3 g/kg/day at T39. There was a training, but no supplementation, effect regarding the reduction in SQ adipocyte CSA (−210 μm(2); time p = 0.001). Interestingly, satellite cell counts within the WPC (p < 0.05) and WPH (p < 0.05) groups were greater at T39 relative to T1. In summary, LEU or protein supplementation (standardized to LEU content) does not provide added benefit in increasing whole-body skeletal muscle mass or strength above PLA following 3 months of training in previously untrained college-aged males that increase Calorie intakes with resistance training and consume above the recommended daily intake of protein throughout training. However, whey protein supplementation increases skeletal muscle satellite cell number in this population, and this phenomena may promote more favorable training adaptations over more prolonged periods.
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spelling pubmed-56227322017-10-05 Effects of Whey, Soy or Leucine Supplementation with 12 Weeks of Resistance Training on Strength, Body Composition, and Skeletal Muscle and Adipose Tissue Histological Attributes in College-Aged Males Mobley, C. Brooks Haun, Cody T. Roberson, Paul A. Mumford, Petey W. Romero, Matthew A. Kephart, Wesley C. Anderson, Richard G. Vann, Christopher G. Osburn, Shelby C. Pledge, Coree D. Martin, Jeffrey S. Young, Kaelin C. Goodlett, Michael D. Pascoe, David D. Lockwood, Christopher M. Roberts, Michael D. Nutrients Article We sought to determine the effects of L-leucine (LEU) or different protein supplements standardized to LEU (~3.0 g/serving) on changes in body composition, strength, and histological attributes in skeletal muscle and adipose tissue. Seventy-five untrained, college-aged males (mean ± standard error of the mean (SE); age = 21 ± 1 years, body mass = 79.2 ± 0.3 kg) were randomly assigned to an isocaloric, lipid-, and organoleptically-matched maltodextrin placebo (PLA, n = 15), LEU (n = 14), whey protein concentrate (WPC, n = 17), whey protein hydrolysate (WPH, n = 14), or soy protein concentrate (SPC, n = 15) group. Participants performed whole-body resistance training three days per week for 12 weeks while consuming supplements twice daily. Skeletal muscle and subcutaneous (SQ) fat biopsies were obtained at baseline (T1) and ~72 h following the last day of training (T39). Tissue samples were analyzed for changes in type I and II fiber cross sectional area (CSA), non-fiber specific satellite cell count, and SQ adipocyte CSA. On average, all supplement groups including PLA exhibited similar training volumes and experienced statistically similar increases in total body skeletal muscle mass determined by dual X-ray absorptiometry (+2.2 kg; time p = 0.024) and type I and II fiber CSA increases (+394 μm(2) and +927 μm(2); time p < 0.001 and 0.024, respectively). Notably, all groups reported increasing Calorie intakes ~600–800 kcal/day from T1 to T39 (time p < 0.001), and all groups consumed at least 1.1 g/kg/day of protein at T1 and 1.3 g/kg/day at T39. There was a training, but no supplementation, effect regarding the reduction in SQ adipocyte CSA (−210 μm(2); time p = 0.001). Interestingly, satellite cell counts within the WPC (p < 0.05) and WPH (p < 0.05) groups were greater at T39 relative to T1. In summary, LEU or protein supplementation (standardized to LEU content) does not provide added benefit in increasing whole-body skeletal muscle mass or strength above PLA following 3 months of training in previously untrained college-aged males that increase Calorie intakes with resistance training and consume above the recommended daily intake of protein throughout training. However, whey protein supplementation increases skeletal muscle satellite cell number in this population, and this phenomena may promote more favorable training adaptations over more prolonged periods. MDPI 2017-09-04 /pmc/articles/PMC5622732/ /pubmed/28869573 http://dx.doi.org/10.3390/nu9090972 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mobley, C. Brooks
Haun, Cody T.
Roberson, Paul A.
Mumford, Petey W.
Romero, Matthew A.
Kephart, Wesley C.
Anderson, Richard G.
Vann, Christopher G.
Osburn, Shelby C.
Pledge, Coree D.
Martin, Jeffrey S.
Young, Kaelin C.
Goodlett, Michael D.
Pascoe, David D.
Lockwood, Christopher M.
Roberts, Michael D.
Effects of Whey, Soy or Leucine Supplementation with 12 Weeks of Resistance Training on Strength, Body Composition, and Skeletal Muscle and Adipose Tissue Histological Attributes in College-Aged Males
title Effects of Whey, Soy or Leucine Supplementation with 12 Weeks of Resistance Training on Strength, Body Composition, and Skeletal Muscle and Adipose Tissue Histological Attributes in College-Aged Males
title_full Effects of Whey, Soy or Leucine Supplementation with 12 Weeks of Resistance Training on Strength, Body Composition, and Skeletal Muscle and Adipose Tissue Histological Attributes in College-Aged Males
title_fullStr Effects of Whey, Soy or Leucine Supplementation with 12 Weeks of Resistance Training on Strength, Body Composition, and Skeletal Muscle and Adipose Tissue Histological Attributes in College-Aged Males
title_full_unstemmed Effects of Whey, Soy or Leucine Supplementation with 12 Weeks of Resistance Training on Strength, Body Composition, and Skeletal Muscle and Adipose Tissue Histological Attributes in College-Aged Males
title_short Effects of Whey, Soy or Leucine Supplementation with 12 Weeks of Resistance Training on Strength, Body Composition, and Skeletal Muscle and Adipose Tissue Histological Attributes in College-Aged Males
title_sort effects of whey, soy or leucine supplementation with 12 weeks of resistance training on strength, body composition, and skeletal muscle and adipose tissue histological attributes in college-aged males
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5622732/
https://www.ncbi.nlm.nih.gov/pubmed/28869573
http://dx.doi.org/10.3390/nu9090972
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