Reactive oxygen species as glucose signaling molecules in mesangial cells cultured under high glucose.BackgroundOxidative stress is one of the important mediators of vascular complications in diabetes including nephropathy. High glucose (HG) generates reactive oxygen species (ROS) as a result of glucose auto-oxidation, metabolism, and formation of advanced glycosylation end products. The concept of ROS-induced tissue injury has recently been revised with the appreciation of new roles for ROS in signaling pathways and gene expression.Methods and Results. High glucose rapidly generated dichlorofluorescein-sensitive cytosolic ROS in rat and mouse mesangial cells. Neither L-glucose nor 3-O-methyl-D-glucose increased cytosolic ROS and cytochalas...
Chronic exposure of human mesangial cells to high glucose environments activates the p38 MAPK pathwa...
大学院医学系研究科環境社会医学Diabetic nephropathy is a major complication of diabetes leading to end-stage renal d...
Mesangial cell signaling cascades in response to mechanical strain and glucose.BackgroundElevated gl...
Reactive oxygen species as glucose signaling molecules in mesangial cells cultured under high glucos...
Glucose-induced oxidative stress in mesangial cells.BackgroundHyperglycemia is a well-recognized pat...
The pathogenesis of diabetic nephropathy (DN) remains incompletely understood. In previous studies, ...
In high glucose protein kinase C-ζ activation is required for mesangial cell generation of reactive ...
High glucose evokes an intrinsic proapoptotic signaling pathway in mesangial cells.BackgroundIn resp...
Reactive oxygen species mediate high glucose–induced plasminogen activator inhibitor-1 up-regulation...
Hydrogen peroxide increases extracellular matrix mRNA through TGF-β in human mesangial cells.Backgro...
Although previous studies have demonstrated that diabetic nephropathy is attributable to early extra...
mediate high-glucose-induced vascular endothelial growth factor expression in mesangial cells. Am J ...
AbstractExcessive reactive oxygen species (ROS) play a key role in the pathogenesis of diabetic neph...
Reactive oxygen species amplify protein kinase C signaling in high glucose-induced fibronectin expre...
Transcriptional activation of transforming growth factor-β1 in mesangial cell culture by high glucos...
Chronic exposure of human mesangial cells to high glucose environments activates the p38 MAPK pathwa...
大学院医学系研究科環境社会医学Diabetic nephropathy is a major complication of diabetes leading to end-stage renal d...
Mesangial cell signaling cascades in response to mechanical strain and glucose.BackgroundElevated gl...
Reactive oxygen species as glucose signaling molecules in mesangial cells cultured under high glucos...
Glucose-induced oxidative stress in mesangial cells.BackgroundHyperglycemia is a well-recognized pat...
The pathogenesis of diabetic nephropathy (DN) remains incompletely understood. In previous studies, ...
In high glucose protein kinase C-ζ activation is required for mesangial cell generation of reactive ...
High glucose evokes an intrinsic proapoptotic signaling pathway in mesangial cells.BackgroundIn resp...
Reactive oxygen species mediate high glucose–induced plasminogen activator inhibitor-1 up-regulation...
Hydrogen peroxide increases extracellular matrix mRNA through TGF-β in human mesangial cells.Backgro...
Although previous studies have demonstrated that diabetic nephropathy is attributable to early extra...
mediate high-glucose-induced vascular endothelial growth factor expression in mesangial cells. Am J ...
AbstractExcessive reactive oxygen species (ROS) play a key role in the pathogenesis of diabetic neph...
Reactive oxygen species amplify protein kinase C signaling in high glucose-induced fibronectin expre...
Transcriptional activation of transforming growth factor-β1 in mesangial cell culture by high glucos...
Chronic exposure of human mesangial cells to high glucose environments activates the p38 MAPK pathwa...
大学院医学系研究科環境社会医学Diabetic nephropathy is a major complication of diabetes leading to end-stage renal d...
Mesangial cell signaling cascades in response to mechanical strain and glucose.BackgroundElevated gl...