Omega-3 Fatty Acids and Skeletal Muscle Health
Skeletal muscle is a plastic tissue capable of adapting and mal-adapting to physical activity and diet. The response of skeletal muscle to adaptive stimuli, such as exercise, can be modified by the prior nutritional status of the muscle. The influence of nutrition on skeletal muscle has the potentia...
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doaj-1b4254f301ec4f749b69cf7bdc12f5c82020-11-24T23:54:52ZengMDPI AGMarine Drugs1660-33972015-11-0113116977700410.3390/md13116977md13116977Omega-3 Fatty Acids and Skeletal Muscle HealthStewart Jeromson0Iain J. Gallagher1Stuart D. R. Galloway2D. Lee Hamilton3Health and Exercise Sciences Research Group, School of Sport, University of Stirling, Stirling, FK9 4LA Scotland, UKHealth and Exercise Sciences Research Group, School of Sport, University of Stirling, Stirling, FK9 4LA Scotland, UKHealth and Exercise Sciences Research Group, School of Sport, University of Stirling, Stirling, FK9 4LA Scotland, UKHealth and Exercise Sciences Research Group, School of Sport, University of Stirling, Stirling, FK9 4LA Scotland, UKSkeletal muscle is a plastic tissue capable of adapting and mal-adapting to physical activity and diet. The response of skeletal muscle to adaptive stimuli, such as exercise, can be modified by the prior nutritional status of the muscle. The influence of nutrition on skeletal muscle has the potential to substantially impact physical function and whole body metabolism. Animal and cell based models show that omega-3 fatty acids, in particular those of marine origin, can influence skeletal muscle metabolism. Furthermore, recent human studies demonstrate that omega-3 fatty acids of marine origin can influence the exercise and nutritional response of skeletal muscle. These studies show that the prior omega-3 status influences not only the metabolic response of muscle to nutrition, but also the functional response to a period of exercise training. Omega-3 fatty acids of marine origin therefore have the potential to alter the trajectory of a number of human diseases including the physical decline associated with aging. We explore the potential molecular mechanisms by which omega-3 fatty acids may act in skeletal muscle, considering the n-3/n-6 ratio, inflammation and lipidomic remodelling as possible mechanisms of action. Finally, we suggest some avenues for further research to clarify how omega-3 fatty acids may be exerting their biological action in skeletal muscle.http://www.mdpi.com/1660-3397/13/11/6977fish oilomega-3 fatty acidsskeletal musclehypertrophy and diabetes |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Stewart Jeromson Iain J. Gallagher Stuart D. R. Galloway D. Lee Hamilton |
spellingShingle |
Stewart Jeromson Iain J. Gallagher Stuart D. R. Galloway D. Lee Hamilton Omega-3 Fatty Acids and Skeletal Muscle Health Marine Drugs fish oil omega-3 fatty acids skeletal muscle hypertrophy and diabetes |
author_facet |
Stewart Jeromson Iain J. Gallagher Stuart D. R. Galloway D. Lee Hamilton |
author_sort |
Stewart Jeromson |
title |
Omega-3 Fatty Acids and Skeletal Muscle Health |
title_short |
Omega-3 Fatty Acids and Skeletal Muscle Health |
title_full |
Omega-3 Fatty Acids and Skeletal Muscle Health |
title_fullStr |
Omega-3 Fatty Acids and Skeletal Muscle Health |
title_full_unstemmed |
Omega-3 Fatty Acids and Skeletal Muscle Health |
title_sort |
omega-3 fatty acids and skeletal muscle health |
publisher |
MDPI AG |
series |
Marine Drugs |
issn |
1660-3397 |
publishDate |
2015-11-01 |
description |
Skeletal muscle is a plastic tissue capable of adapting and mal-adapting to physical activity and diet. The response of skeletal muscle to adaptive stimuli, such as exercise, can be modified by the prior nutritional status of the muscle. The influence of nutrition on skeletal muscle has the potential to substantially impact physical function and whole body metabolism. Animal and cell based models show that omega-3 fatty acids, in particular those of marine origin, can influence skeletal muscle metabolism. Furthermore, recent human studies demonstrate that omega-3 fatty acids of marine origin can influence the exercise and nutritional response of skeletal muscle. These studies show that the prior omega-3 status influences not only the metabolic response of muscle to nutrition, but also the functional response to a period of exercise training. Omega-3 fatty acids of marine origin therefore have the potential to alter the trajectory of a number of human diseases including the physical decline associated with aging. We explore the potential molecular mechanisms by which omega-3 fatty acids may act in skeletal muscle, considering the n-3/n-6 ratio, inflammation and lipidomic remodelling as possible mechanisms of action. Finally, we suggest some avenues for further research to clarify how omega-3 fatty acids may be exerting their biological action in skeletal muscle. |
topic |
fish oil omega-3 fatty acids skeletal muscle hypertrophy and diabetes |
url |
http://www.mdpi.com/1660-3397/13/11/6977 |
work_keys_str_mv |
AT stewartjeromson omega3fattyacidsandskeletalmusclehealth AT iainjgallagher omega3fattyacidsandskeletalmusclehealth AT stuartdrgalloway omega3fattyacidsandskeletalmusclehealth AT dleehamilton omega3fattyacidsandskeletalmusclehealth |
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