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J R Zierath

Showing results (91-100 of 101) with videos related to

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Diabetes|June 28, 2000
Use of a novel impermeable biotinylated photolabeling reagent to assess insulin- and hypoxia-stimulated cell surface GLUT4 content in skeletal muscle from type 2 diabetic patientsJ W Ryder, J Yang, D Galuska, et al.
Diabetologia|February 8, 2006
Evidence that oestrogen receptor-alpha plays an important role in the regulation of glucose homeostasis in mice: insulin sensitivity in the liverG Bryzgalova, H Gao, B Ahren, et al.
Diabetologia|October 13, 2010
Impaired insulin-induced site-specific phosphorylation of TBC1 domain family, member 4 (TBC1D4) in skeletal muscle of type 2 diabetes patients is restored by endurance exercise-trainingB F Vind, C Pehmøller, J T Treebak, et al.
Cellular and Molecular Life Sciences : CMLS|June 27, 2003
Insulin action in cultured human skeletal muscle cells during differentiation: assessment of cell surface GLUT4 and GLUT1 contentL Al-Khalili, A V Chibalin, K Kannisto, et al.
The Biochemical Journal|August 24, 1999
In vitro analysis of the glucose-transport system in GLUT4-null skeletal muscleJ W Ryder, Y Kawano, A V Chibalin, et al.
The Journal of Endocrinology|March 10, 2020
The estrogen receptor α-selective agonist propyl pyrazole triol improves glucose tolerance in ob/ob mice: potential molecular mechanismsL Lundholm, G Bryzgalova, H Gao, et al.
The Journal of Endocrinology|September 2, 2008
The estrogen receptor {alpha}-selective agonist propyl pyrazole triol improves glucose tolerance in ob/ob mice; potential molecular mechanismsL Lundholm, G Bryzgalova, H Gao, et al.
Diabetologia|March 30, 2010
Nitric oxide increases cyclic GMP levels, AMP-activated protein kinase (AMPK)alpha1-specific activity and glucose transport in human skeletal muscleA S Deshmukh, Y C Long, T de Castro Barbosa, et al.
Diabetes|May 4, 2001
Isomer-specific antidiabetic properties of conjugated linoleic acid. Improved glucose tolerance, skeletal muscle insulin action, and UCP-2 gene expressionJ W Ryder, C P Portocarrero, X M Song, et al.
Diabetologia|March 3, 2009
Potential role of TBC1D4 in enhanced post-exercise insulin action in human skeletal muscleJ T Treebak, C Frøsig, C Pehmøller, et al.
Pageof 11

Showing results (91-100 of 101) with videos related to

Sort By:
Pageof 11
Diabetes|June 28, 2000
Use of a novel impermeable biotinylated photolabeling reagent to assess insulin- and hypoxia-stimulated cell surface GLUT4 content in skeletal muscle from type 2 diabetic patientsJ W Ryder, J Yang, D Galuska, et al.
Diabetologia|February 8, 2006
Evidence that oestrogen receptor-alpha plays an important role in the regulation of glucose homeostasis in mice: insulin sensitivity in the liverG Bryzgalova, H Gao, B Ahren, et al.
Diabetologia|October 13, 2010
Impaired insulin-induced site-specific phosphorylation of TBC1 domain family, member 4 (TBC1D4) in skeletal muscle of type 2 diabetes patients is restored by endurance exercise-trainingB F Vind, C Pehmøller, J T Treebak, et al.
Cellular and Molecular Life Sciences : CMLS|June 27, 2003
Insulin action in cultured human skeletal muscle cells during differentiation: assessment of cell surface GLUT4 and GLUT1 contentL Al-Khalili, A V Chibalin, K Kannisto, et al.
The Biochemical Journal|August 24, 1999
In vitro analysis of the glucose-transport system in GLUT4-null skeletal muscleJ W Ryder, Y Kawano, A V Chibalin, et al.
The Journal of Endocrinology|March 10, 2020
The estrogen receptor α-selective agonist propyl pyrazole triol improves glucose tolerance in ob/ob mice: potential molecular mechanismsL Lundholm, G Bryzgalova, H Gao, et al.
The Journal of Endocrinology|September 2, 2008
The estrogen receptor {alpha}-selective agonist propyl pyrazole triol improves glucose tolerance in ob/ob mice; potential molecular mechanismsL Lundholm, G Bryzgalova, H Gao, et al.
Diabetologia|March 30, 2010
Nitric oxide increases cyclic GMP levels, AMP-activated protein kinase (AMPK)alpha1-specific activity and glucose transport in human skeletal muscleA S Deshmukh, Y C Long, T de Castro Barbosa, et al.
Diabetes|May 4, 2001
Isomer-specific antidiabetic properties of conjugated linoleic acid. Improved glucose tolerance, skeletal muscle insulin action, and UCP-2 gene expressionJ W Ryder, C P Portocarrero, X M Song, et al.
Diabetologia|March 3, 2009
Potential role of TBC1D4 in enhanced post-exercise insulin action in human skeletal muscleJ T Treebak, C Frøsig, C Pehmøller, et al.
Pageof 11