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1 Stimulatory effect of insulin on glucose uptake by muscle involves the central nervous system in insulin-sensitive mice
article 2011    
Author: Coomans, C.P. · Biermasz, N.R. · Geerling, J.J. · Guigas, B. · Rensen, P.C.N. · Havekes, L.M. · Romijn, J.A.
Keywords: Biology · adenosine triphosphate sensitive potassium channel · glucose · insulin · tolbutamide · adipose tissue · animal experiment · animal tissue · article · central nervous system · controlled study · diet · gluconeogenesis · glucose transport · heart · hyperinsulinemia · insulin resistance · insulin sensitivity · lateral brain ventricle · male · mouse · muscle · nonhuman · obesity · priority journal · signal transduction · stimulation · Healthy Living · Life · MHR - Metabolic Health Research · EELS - Earth, Environmental and Life Sciences
[Abstract]

2 Sixteen hours of fasting differentially affects hepatic and muscle insulin sensitivity in mice
article 2005    
Author: Heijboer, A.C. · Donga, E. · Voshol, P.J. · Dang, Z.C. · Havekes, L.M. · Romijn, J.A. · Corssmit, E.P.M.
Keywords: Biology · Biomedical Research · Glucose metabolism · Insulin action · Isotopes · Steatosis · Transcription factors · Glucose · Messenger RNA · Animal experiment · Animal tissue · Controlled study · Diet restriction · Fatty acid oxidation · Gene expression · Gluconeogenesis · Glucose transport · Glycogenolysis · Insulin sensitivity · Lipogenesis · Mouse · Mouse strain · Nonhuman · Skeletal muscle · Wild type · Biosynthesis · C57BL mouse · Drug effect · Genetics · Glucose blood level · Metabolism · Physiology · Time · Animals · Blood Glucose · Body Weight · Fasting · Insulin · Insulin Resistance · Liver · Male · Mice · Mice, Inbred C57BL · Muscle, Skeletal · RNA, Messenger · Time Factors · Triglycerides
[PDF] [Abstract]

3 Hepatic glucose production is more sensitive to insulin-mediated inhibition than hepatic VLDL-triglyceride production
article 2006    
Author: Boer, M.A.M. den · Voshol, P.J. · Kuipers, F. · Romijn, J.A. · Havekes, L.M.
Keywords: Biology · Biomedical Research · Euglycemic hyperinsulinemic clamp · Fatty acid · Very-low-density lipoprotein · Insulin · Adipose tissue · Animal experiment · Aanimal model · Controlled study · Drug effect · Drug inhibition · Fatty acid blood level · Gluconeogenesis · Glucose infusion · Glucose transport · Hyperinsulinemia · Insulin blood level · Insulin resistance · Insulin sensitivity · Lipolysis · Liver function · Mouse · Nonhuman · Animals · Blood Glucose · Dose-Response Relationship, Drug · Fatty Acids, Nonesterified · Glucose · Glucose Clamp Technique · Hypoglycemic Agents · Insulin · Kinetics · Lipoproteins, VLDL · Liver · Male · Mice · Mice, Inbred C57BL · Triglycerides
[Abstract]

4 Increased hepatic insulin sensitivity together with decreased hepatic triglyceride stores in hormone-sensitive lipase-deficient mice
article 2003    
Author: Voshol, P.J. · Haemmerle, G. · Ouwens, D.M. · Zimmermann, R. · Zechner, R. · Teusink, B. · Maassen, J.A. · Havekes, L.M. · Romijn, J.A.
Keywords: Health · Glucose · Hormone sensitive lipase · Insulin receptor · Protein kinase B · Triacylglycerol · Triacylglycerol lipase · Unclassified drug · Animal tissue · Controlled study · Enzyme activity · Enzyme deficiency · Enzyme mechanism · Enzyme phosphorylation · Fatty acid blood level · Gluconeogenesis · Glucose transport · Hormone sensitivity · Hyperinsulinemia · Insulin sensitivity · Knockout mouse · Lipid liver level · Lipolysis · Mouse · Nonhuman · Western blotting · Adiponectin · Animals · Blood Glucose · Cholesterol · Cholesterol Esterase · Fasting · Fatty Acids, Nonesterified · Glucose · Insulin · Intercellular Signaling Peptides and Proteins · Liver · Male · Mice · Mice, Knockout · Muscle, Skeletal · Proteins · Receptor, Insulin · Triglycerides
[Abstract]

5 CD36 deficiency increases insulin sensitivity in muscle, but induces insulin resistance in the liver in mice
article 2003    
Author: Goudriaan, J.R. · Dahlmans, V.E.H. · Teusink, B. · Ouwens, D.M. · Febbraio, M. · Maassen, J.A. · Romijn, J.A. · Havekes, L.M. · Voshol, P.J.
Keywords: Biology · Biomedical Research · Fatty acid transport · Glucose metabolism · Hepatic steatosis · Hyperinsulinemic clamp · CD36 antigen · fatty acid · glucose · protein kinase B · triacylglycerol · unclassified drug · animal experiment · animal model · animal tissue · controlled study · enzyme activation · enzyme deficiency · fatty acid blood level · glucose blood level · glucose transport · hyperinsulinemia · insulin sensitivity · male · mouse · muscle · nonhuman · spontaneously hypertensive rat · triacylglycerol blood level · Western blotting · wild type · Animals · Antigens, CD36 · Blood Glucose · Body Weight · Eating · Gene Deletion · Insulin · Insulin Resistance · Lipids · Liver · Mice · Mice, Inbred C57BL · Muscle, Skeletal · Rats · Signal Transduction · Triglycerides · Tritium
[PDF] [Abstract]

6 Overexpression of APOC1 in obob mice leads to hepatic steatosis and severe hepatic insulin resistance
article 2004    
Author: Muurling, M. · Hoek, A.M. van den · Mensink, R.P. · Pijl, H. · Romijn, J.A. · Havekes, L.M. · Voshol, P.J.
Keywords: Biology · Biomedical Research · Free fatty acid metabolism · Hepatic fat accumulation · Lipid metabolism · Peroxisome proliferator-activated receptor-γ · Rosiglitazone · Diacylglycerol · Glucose · Ketone body · Peroxisome proliferator activated receptor gamma · Rosiglitazone · Triacylglycerol · Adipose tissue · Animal experiment · Animal model · Animal tissue · APOC1 gene · Cholesterol blood level · Controlled study · Fatty acid metabolism · Gene · Gene overexpression · Gluconeogenesis · Glucose blood level · Glucose transport · Hyperglycemia · Hyperinsulinemia · Hyperlipidemia · Insulin blood level · Insulin resistance · Lipid metabolism · Lipid storage · Mouse · Nonhuman · Obesity · Transgenic mouse · Triacylglycerol blood level · Weight reduction · Animals · Apolipoprotein C-I · Apolipoproteins C · Blood Glucose · Body Weight · Fatty Acids · Fatty Liver · Gene Expression · Humans · Hyperglycemia · Hyperinsulinism · Hyperlipidemias · Insulin · Insulin Resistance · Mice · Mice, Transgenic
[PDF] [Abstract]

7 CNTO736, a novel glucagon-like peptide-1 receptor agonist, ameliorates insulin resistance and inhibits very low-density lipoprotein production in high-fat-fed mice
article 2009    
Author: Parlevliet, E.T. · Schröder-van der Elst, J.P. · Corssmit, E.P.M. · Picha, K. · O'Neil, K. · Stojanovic-Susulic, V. · Ort, T. · Havekes, L.M. · Romijn, J.A. · Pijl, H.
Keywords: Biology · Biomedical Research · CNTO 736 · exendin 4 · glucagon like peptide 1 derivative · glucagon like peptide 1 receptor · very low density lipoprotein · glucagon like peptide receptor · glucagon receptor · glucagon-like peptide receptor · hybrid protein · triacylglycerol · animal experiment · animal model · chronic drug administration · controlled study · gluconeogenesis · glucose blood level · glucose transport · hyperinsulinemia · lipid diet · lipoprotein metabolism · male · mouse · nonhuman · single drug dose · animal food · blood · C57BL mouse · Cytomegalovirus · Drug effect · Drug potentiation · Fat intake · Genetics · Intravenous drug administration · Metabolism · Molecular cloning · Animal Feed · Animals · Blood Glucose · Cloning, Molecular · Cytomegalovirus · Dietary Fats · Glucose · Glucose Clamp Technique · Hyperinsulinism · Infusions, Intravenous · Insulin · Insulin Resistance · Lipoproteins, VLDL · Liver · Mice · Mice, Inbred C57BL · Promoter Regions, Genetic · Receptors, Glucagon · Recombinant Fusion Proteins · Triglycerides
[Abstract]

Search results also available in MS Excel format.

Showing 1 to 7 of 7 found. | Sort by date