Oxidative stress has been linked to the pathogenesis of diabetic nephropathy, the complication of diabetes in the kidney. NADPH oxidases of the Nox family, and in particular the homologue Nox4, are a major source of reactive oxygen species in the diabetic kidney and are critical mediators of redox signaling in glomerular and tubulointerstitial cells exposed to the diabetic milieu. Here, we present an over-view of the current knowledge related to the understanding of the role of Nox enzymes in the processes that control mesangial cell, podocyte and tubulointerstitial cell injury induced by hyperglycemia and other predominant factors enhanced in the diabetic milieu, including the renin-angiotensin system and transforming growth factor-β. The ...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Molecular mechanisms underlying renal complications of diabetes remain unclear. We tested whether re...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Significance: Intrarenal oxidative stress plays a critical role in the initiation and progression of...
NADPH oxidase–derived excessive production of reactive oxygen species (ROS) in the kidney plays a ke...
Significance: Intrarenal oxidative stress plays a critical role in the initiation and progression of...
NADPH oxidase–derived excessive production of reactive oxygen species (ROS) in the kidney plays a ke...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Diabetic nephropathy may occur, in part, as a result of intrarenal oxidative stress. NADPH oxidases ...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Molecular mechanisms underlying renal complications of diabetes remain unclear. We tested whether re...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Significance: Intrarenal oxidative stress plays a critical role in the initiation and progression of...
NADPH oxidase–derived excessive production of reactive oxygen species (ROS) in the kidney plays a ke...
Significance: Intrarenal oxidative stress plays a critical role in the initiation and progression of...
NADPH oxidase–derived excessive production of reactive oxygen species (ROS) in the kidney plays a ke...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Diabetic nephropathy may occur, in part, as a result of intrarenal oxidative stress. NADPH oxidases ...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...
Current treatments for diabetic nephropathy (DN) only result in slowing its progression, thus highli...