Nutritional Supplements in Support of Resistance Exercise to Counter Age-Related Sarcopenia
Age-related sarcopenia, composed of myopenia (a decline in muscle mass) and dynapenia (a decline in muscle strength), can compromise physical function, increase risk of disability, and lower quality of life in older adults. There are no available pharmaceutical treatments for this condition, but evi...
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Published in | Advances in food and nutrition research Vol. 6; no. 4; pp. 452 - 460 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
United States
Elsevier Inc
01.07.2015
American Society for Nutrition |
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Online Access | Get full text |
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Abstract | Age-related sarcopenia, composed of myopenia (a decline in muscle mass) and dynapenia (a decline in muscle strength), can compromise physical function, increase risk of disability, and lower quality of life in older adults. There are no available pharmaceutical treatments for this condition, but evidence shows resistance training (RT) is a viable and relatively low-cost treatment with an exceptionally positive side effect profile. Further evidence suggests that RT-induced increases in muscle mass, strength, and function can be enhanced by certain foods, nutrients, or nutritional supplements. This brief review focuses on adjunctive nutritional strategies, which have a reasonable evidence base, to enhance RT-induced gains in outcomes relevant to sarcopenia and to reducing risk of functional declines. |
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AbstractList | Age-related sarcopenia, composed of myopenia (a decline in muscle mass) and dynapenia (a decline in muscle strength), can compromise physical function, increase risk of disability, and lower quality of life in older adults. There are no available pharmaceutical treatments for this condition, but evidence shows resistance training (RT) is a viable and relatively low-cost treatment with an exceptionally positive side effect profile. Further evidence suggests that RT-induced increases in muscle mass, strength, and function can be enhanced by certain foods, nutrients, or nutritional supplements. This brief review focuses on adjunctive nutritional strategies, which have a reasonable evidence base, to enhance RT-induced gains in outcomes relevant to sarcopenia and to reducing risk of functional declines. Age-related sarcopenia, composed of myopenia (a decline in muscle mass) and dynapenia (a decline in muscle strength), can compromise physical function, increase risk of disability, and lower quality of life in older adults. There are no available pharmaceutical treatments for this condition, but evidence shows resistance training (RT) is a viable and relatively low-cost treatment with an exceptionally positive side effect profile. Further evidence suggests that RT-induced increases in muscle mass, strength, and function can be enhanced by certain foods, nutrients, or nutritional supplements. This brief review focuses on adjunctive nutritional strategies, which have a reasonable evidence base, to enhance RT-induced gains in outcomes relevant to sarcopenia and to reducing risk of functional declines.Age-related sarcopenia, composed of myopenia (a decline in muscle mass) and dynapenia (a decline in muscle strength), can compromise physical function, increase risk of disability, and lower quality of life in older adults. There are no available pharmaceutical treatments for this condition, but evidence shows resistance training (RT) is a viable and relatively low-cost treatment with an exceptionally positive side effect profile. Further evidence suggests that RT-induced increases in muscle mass, strength, and function can be enhanced by certain foods, nutrients, or nutritional supplements. This brief review focuses on adjunctive nutritional strategies, which have a reasonable evidence base, to enhance RT-induced gains in outcomes relevant to sarcopenia and to reducing risk of functional declines. |
Author | Phillips, Stuart M |
Author_xml | – sequence: 1 givenname: Stuart M surname: Phillips fullname: Phillips, Stuart M email: phillis@mcmaster.ca organization: Department of Kinesiology, McMaster University, Hamilton, Canada |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/26178029$$D View this record in MEDLINE/PubMed |
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Copyright | 2015 American Society for Nutrition 2015 American Society for Nutrition. 2015 American Society for Nutrition 2015 |
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Keywords | 1-RM RT EAA PDCAAS vitamin D β-HMB p70S6k1 DIAAS 4EBP1 MPS creatine function protein mTOR aging Leu mTORC1 MPB dynapenia |
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Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 ObjectType-Review-3 content type line 23 The author reported no funding received for this study. Author disclosures: SM Phillips has received research grant funding from The Canadian Institutes for Health Research (MOP 123296) and The National Science and Engineering Research Council, Dairy Farmers of Canada, and the US Dairy Research Institute; has undertaken contract research sponsored by Nestlé has provided consultation and has spoken on behalf of the Dairy Farmers of Canada, the US National Dairy Council, Nestlé, and the US National Cattlemen’s Beef Association; and for these services has received cost of living, travel expenses, and, on occasion, honoraria. |
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SubjectTerms | adverse effects Aged Aging creatine Creatine - administration & dosage Diet Dietary Proteins - administration & dosage Dietary Supplements dynapenia elderly Fatty Acids, Omega-3 - administration & dosage Female foods function Humans Leu Leucine - administration & dosage Male Muscle Strength Muscle, Skeletal - pathology Muscle, Skeletal - physiopathology muscles nutrients protein Quality of Life Resistance Training Reviews risk sarcopenia Sarcopenia - therapy strength training Valerates - administration & dosage vitamin D β-HMB |
Title | Nutritional Supplements in Support of Resistance Exercise to Counter Age-Related Sarcopenia |
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