Eicosapentaenoic and Docosahexaenoic Acid-Enriched High Fat Diet Delays Skeletal Muscle Degradation in Mice

Nutrients. 2016 Sep 3;8(9):543. doi: 10.3390/nu8090543.

Abstract

Low-grade chronic inflammatory conditions such as ageing, obesity and related metabolic disorders are associated with deterioration of skeletal muscle (SkM). Human studies have shown that marine fatty acids influence SkM function, though the underlying mechanisms of action are unknown. As a model of diet-induced obesity, we fed C57BL/6J mice either a high fat diet (HFD) with purified marine fatty acids eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) (HFD-ED), a HFD with corn oil, or normal mouse chow for 8 weeks; and used transcriptomics to identify the molecular effects of EPA and DHA on SkM. Consumption of ED-enriched HFD modulated SkM metabolism through increased gene expression of mitochondrial β-oxidation and slow-fiber type genes compared with HFD-corn oil fed mice. Furthermore, HFD-ED intake increased nuclear localization of nuclear factor of activated T-cells (Nfatc4) protein, which controls fiber-type composition. This data suggests a role for EPA and DHA in mitigating some of the molecular responses due to a HFD in SkM. Overall, the results suggest that increased consumption of the marine fatty acids EPA and DHA may aid in the prevention of molecular processes that lead to muscle deterioration commonly associated with obesity-induced low-grade inflammation.

Keywords: eicosapentaenoic acid (EPA)/Docosahexaenoic acid (DHA); mitochondrial β-oxidation; obesity; skeletal-muscle metabolism; transcriptome.

MeSH terms

  • Animals
  • Corn Oil
  • Diet, High-Fat*
  • Disease Models, Animal
  • Docosahexaenoic Acids / pharmacology*
  • Eicosapentaenoic Acid / pharmacology*
  • Gene Expression Profiling / methods
  • Gene Expression Regulation
  • Inflammation / drug therapy*
  • Inflammation / etiology
  • Inflammation / genetics
  • Inflammation / metabolism
  • Male
  • Mice, Inbred C57BL
  • Mitochondria, Muscle / drug effects
  • Mitochondria, Muscle / metabolism
  • Muscle Fibers, Skeletal / drug effects
  • Muscle Fibers, Skeletal / metabolism
  • Muscle Fibers, Skeletal / pathology
  • Muscle, Skeletal / drug effects*
  • Muscle, Skeletal / metabolism
  • Muscle, Skeletal / pathology
  • Obesity / drug therapy*
  • Obesity / etiology
  • Obesity / genetics
  • Obesity / metabolism
  • Oxidative Phosphorylation / drug effects
  • Time Factors
  • Transcriptome

Substances

  • Docosahexaenoic Acids
  • Corn Oil
  • Eicosapentaenoic Acid