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Independent and combined effects of acute physiological hyperglycaemia and hyperinsulinaemia on metabolic gene expression in human skeletal muscle
Kostas Tsintzas
,
Luke Norton
, Kamal Chokkalingam
, Nusrat Nizamani
, Scott Cooper
, Francis Stephens
, Rudolf Billeter
, Andrew Bennett
Department of Cell Systems & Anatomy
Department of Cellular & Integrative Physiology
Division of Diabetes
Producción científica
:
Article
›
revisión exhaustiva
25
Citas (Scopus)
Información general
Huella
Huella
Profundice en los temas de investigación de 'Independent and combined effects of acute physiological hyperglycaemia and hyperinsulinaemia on metabolic gene expression in human skeletal muscle'. En conjunto forman una huella única.
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Ponderación
Alfabéticamente
Biochemistry, Genetics and Molecular Biology
Hyperglycemia
100%
Nested Gene
71%
Skeletal Muscle
42%
Kinase
42%
Phosphatidylinositol
42%
Gene Expression
28%
Energy Metabolism
28%
Insulin Signaling
28%
Liver X Receptor
28%
Normal Human
14%
Insulin
14%
Phosphorylation
14%
Binding Protein
14%
Modulation
14%
Insulin Resistance
14%
Beta Oxidation
14%
Development
14%
Signaling Protein
14%
Lipid Storage
14%
Glucose-6-Phosphate Dehydrogenase
14%
Glucose Metabolism
14%
ABC Transporter
14%
Carbohydrate
14%
Lipogenesis
14%
CD36
14%
Fatty Acid Transport
14%
Pyruvate Dehydrogenase Kinase
14%
Fatty Acid Oxidation
14%
Long-Chain Acyl-CoA Dehydrogenase
14%