Keyphrases
Eicosapentaenoic Acid
100%
3 Fatty Acids
100%
Human Myotubes
100%
Metabolic Switch
100%
Fatty Acids
62%
Fatty Acid Oxidation
37%
T0901317
37%
Lipid Droplets
25%
Linoleic Acid
25%
Suppressiveness
25%
Microarray Analysis
12%
Per Se
12%
Low Glucose
12%
Acid Treatment
12%
Skeletal muscle
12%
Palmitic Acid
12%
Glucose Utilization
12%
High Glucose
12%
Carbohydrate Metabolism
12%
LXR Agonist
12%
Oleic Acid
12%
Acid Conditions
12%
Mitochondrial Mass
12%
Droplet Volume
12%
Myotubes
12%
Higher Fatty Acids
12%
INIS
humans
100%
fatty acids
100%
glucose
30%
oxidation
23%
lipids
15%
droplets
15%
linoleic acid
15%
volume
7%
increasing
7%
flexibility
7%
availability
7%
genes
7%
muscles
7%
metabolism
7%
mitochondria
7%
capacity
7%
substrates
7%
carbohydrates
7%
palmitic acid
7%
oleic acid
7%
Pharmacology, Toxicology and Pharmaceutical Science
Fatty Acid
100%
Omega-3 Fatty Acid
100%
Icosapentaenoic Acid
88%
N (2,2,2 Trifluoroethyl) N [4 (2,2,2 Trifluoro 1 Hydroxy 1 Trifluoromethylethyl)phenyl]benzenesulfonamide
33%
Linoleic Acid
22%
Fat Droplet
22%
Oleic Acid
11%
Palmitic Acid
11%
Biochemistry, Genetics and Molecular Biology
Omega 3 Fatty Acid
100%
Eicosapentaenoic Acid
100%
Beta Oxidation
37%
Lipid Droplet
25%
Linoleic Acid
25%
Skeletal Muscle
12%
Agonist
12%
Carbohydrate Metabolism
12%
Oleic Acid
12%
Glucose Utilization
12%
Palmitic Acid
12%
Immunology and Microbiology
Myotube
100%
Fatty Acid Oxidation
100%
Skeletal Muscle
33%
Agonist
33%
Carbohydrate Metabolism
33%
Glucose Utilization
33%
Veterinary Science and Veterinary Medicine