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Disruption of microtubules in rat skeletal muscle does not inhibit insulin- or contraction-stimulated glucose transport.
Hua Ai, Evelyn Ralston, Hans P M M Lauritzen,
Henrik Galbo
,
Thorkil Ploug
Department of Biomedical Sciences
25
Citations (Scopus)
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Dive into the research topics of 'Disruption of microtubules in rat skeletal muscle does not inhibit insulin- or contraction-stimulated glucose transport.'. Together they form a unique fingerprint.
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Immunology and Microbiology
Insulin
100%
Microtubule
100%
Skeletal Muscle
100%
Glucose Transport
100%
Muscle
71%
Immunofluorescence
14%
Glucose Transporter
14%
Muscle Contraction
14%
Mediator
14%
Soleus Muscle
14%
Depolymerization
14%
Cytoskeleton
14%
Cell Surface
14%
Pharmacology, Toxicology and Pharmaceutical Science
Colchicine
100%
Nocodazole
100%
Glucose Transporter 4
66%
Digitalis
33%
Deoxyglucose
33%
Medicine and Dentistry
Nocodazole
42%
Colchicine
42%
Agricultural and Biological Sciences
Nocodazole
42%
Digitalis
14%
Glucose Transporter
14%
2-Deoxyglucose
14%
Keyphrases
Microtubule Cytoskeleton
14%
Storage Site
14%
Neuroscience
Hexose Transport
14%