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Control of myocardial fatty acid uptake
Jan Glatz
,
Joannes Luiken
Research output
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Chapter in Book/Report/Conference proceeding
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Chapter
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Academic
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Dive into the research topics of 'Control of myocardial fatty acid uptake'. Together they form a unique fingerprint.
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Keyphrases
Fatty Acid Uptake
100%
Cluster of Differentiation 36 (CD36)
100%
Sarcolemma
60%
Carbohydrates
40%
Fatty Acids
40%
Membrane Protein
20%
Long-chain Fatty Acids
20%
Energy Production
20%
Therapeutic Approaches
20%
Dysregulation
20%
Insulin
20%
Metabolic Disease
20%
Glucose Transporter 4 (GLUT4)
20%
Fatty Acid Utilization
20%
Endosomal
20%
Substrate Preference
20%
Physiological Stimuli
20%
Protein Isoforms
20%
Metabolic Homeostasis
20%
Storage Pool
20%
Membrane-associated
20%
Lactate Uptake
20%
Acid Transport
20%
Myocardial Glucose Uptake
20%
Fatty Acid Binding Protein
20%
Fatty Acid Transport Protein
20%
INIS
control
100%
fatty acids
100%
uptake
100%
glucose
33%
regulations
33%
proteins
33%
substrates
33%
membranes
22%
transport
22%
carbohydrates
22%
diseases
11%
contraction
11%
modulation
11%
energy
11%
production
11%
chains
11%
stimuli
11%
pools
11%
insulin
11%
homeostasis
11%
storage
11%
metabolic diseases
11%
lactates
11%
Medicine and Dentistry
Fatty Acid Transport
100%
Sarcolemma
75%
Fatty Acid
50%
Lactic Acid
25%
Glucose Uptake
25%
Homeostasis
25%
Protein Z
25%
Metabolic Disorder
25%
Fatty Acid Transporter
25%
Isoprotein
25%
Membrane Protein
25%
Long Chain Fatty Acid
25%
Diseases
25%
Biochemistry, Genetics and Molecular Biology
Fatty Acid Transport
100%
CD36
100%
Sarcolemma
60%
Isoform
20%
Transport Protein
20%
Mitochondrial Membrane Transport Protein
20%
Homeostasis
20%
Glucose Transport
20%
Fatty Acid-Binding Protein
20%
Energy Yield
20%
Membrane Protein
20%
Carrier Protein
20%
Immunology and Microbiology
Fatty Acid Transport
100%
CD36
100%
Sarcolemma
60%
Protein Binding
20%
Glucose Transport
20%
Homeostasis
20%
Energy Yield
20%
Insulin
20%