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R Laybutt

Showing results (11-20 of 23) with videos related to

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The American Journal of Physiology|December 22, 1999
Muscle lipid accumulation and protein kinase C activation in the insulin-resistant chronically glucose-infused ratD R Laybutt, C Schmitz-Peiffer, A K Saha, et al.
The Journal of Biological Chemistry|May 13, 1999
Chronic hyperglycemia triggers loss of pancreatic beta cell differentiation in an animal model of diabetesJ C Jonas, A Sharma, W Hasenkamp, et al.
Diabetologia|November 25, 2010
Deletion of protein kinase Cδ in mice modulates stability of inflammatory genes and protects against cytokine-stimulated beta cell death in vitro and in vivoJ Cantley, E Boslem, D R Laybutt, et al.
Diabetes|March 29, 2001
beta-cell adaptation to hyperglycemiaR Laybutt, W Hasenkamp, A Groff, et al.
Molecular Cell|June 30, 2001
Translational control is required for the unfolded protein response and in vivo glucose homeostasisD Scheuner, B Song, E McEwen, et al.
Advances in Experimental Medicine and Biology|October 22, 1998
Malonyl CoA as a metabolic switch and a regulator of insulin sensitivityN B Ruderman, A K Saha, D Vavvas, et al.
Diabetologia|February 3, 2007
Endoplasmic reticulum stress contributes to beta cell apoptosis in type 2 diabetesD R Laybutt, A M Preston, M C Akerfeldt, et al.
Diabetologia|November 29, 2012
Pharmacological reduction of NEFA restores the efficacy of incretin-based therapies through GLP-1 receptor signalling in the beta cell in mouse models of diabetesZ F Kang, Y Deng, Y Zhou, et al.
The Journal of Cell Biology|June 16, 1997
Glucose transporter (GLUT-4) is targeted to secretory granules in rat atrial cardiomyocytesJ W Slot, G Garruti, S Martin, et al.
The American Journal of Physiology|June 11, 1999
Cytosolic citrate and malonyl-CoA regulation in rat muscle in vivoA K Saha, D R Laybutt, D Dean, et al.
Pageof 3

Showing results (11-20 of 23) with videos related to

Sort By:
Pageof 3
The American Journal of Physiology|December 22, 1999
Muscle lipid accumulation and protein kinase C activation in the insulin-resistant chronically glucose-infused ratD R Laybutt, C Schmitz-Peiffer, A K Saha, et al.
The Journal of Biological Chemistry|May 13, 1999
Chronic hyperglycemia triggers loss of pancreatic beta cell differentiation in an animal model of diabetesJ C Jonas, A Sharma, W Hasenkamp, et al.
Diabetologia|November 25, 2010
Deletion of protein kinase Cδ in mice modulates stability of inflammatory genes and protects against cytokine-stimulated beta cell death in vitro and in vivoJ Cantley, E Boslem, D R Laybutt, et al.
Diabetes|March 29, 2001
beta-cell adaptation to hyperglycemiaR Laybutt, W Hasenkamp, A Groff, et al.
Molecular Cell|June 30, 2001
Translational control is required for the unfolded protein response and in vivo glucose homeostasisD Scheuner, B Song, E McEwen, et al.
Advances in Experimental Medicine and Biology|October 22, 1998
Malonyl CoA as a metabolic switch and a regulator of insulin sensitivityN B Ruderman, A K Saha, D Vavvas, et al.
Diabetologia|February 3, 2007
Endoplasmic reticulum stress contributes to beta cell apoptosis in type 2 diabetesD R Laybutt, A M Preston, M C Akerfeldt, et al.
Diabetologia|November 29, 2012
Pharmacological reduction of NEFA restores the efficacy of incretin-based therapies through GLP-1 receptor signalling in the beta cell in mouse models of diabetesZ F Kang, Y Deng, Y Zhou, et al.
The Journal of Cell Biology|June 16, 1997
Glucose transporter (GLUT-4) is targeted to secretory granules in rat atrial cardiomyocytesJ W Slot, G Garruti, S Martin, et al.
The American Journal of Physiology|June 11, 1999
Cytosolic citrate and malonyl-CoA regulation in rat muscle in vivoA K Saha, D R Laybutt, D Dean, et al.
Pageof 3