NADPH Oxidase Nox5 Accelerates Renal Injury in Diabetic Nephropathy

Jay C Jha1,2, Claudine Banal1, Jun Okabe2,3

  • 1JDRF Danielle Alberti Memorial Centre for Diabetic Complications, Diabetic Complications Division, Baker IDI Heart and Diabetes Institute, Melbourne, Australia.

Diabetes
|July 28, 2017
PubMed

Insights

Excessive reactive oxygen species (ROS) from NADPH oxidase 5 (Nox5) worsen kidney damage in diabetes. This study shows Nox5 drives diabetic nephropathy progression by increasing ROS and inflammation in human cells and a mouse model.

Area of Science:

  • Nephrology
  • Molecular Biology
  • Diabetology

Background:

  • Diabetic nephropathy involves kidney damage from excessive reactive oxygen species (ROS) produced by NADPH oxidase.
  • The role of the Nox5 isoform in diabetic kidney disease is not well understood due to its absence in mice.

Purpose of the Study:

  • To investigate the role of Nox5 in diabetic nephropathy using human mesangial cells and a human Nox5 transgenic mouse model.
  • To determine if Nox5 contributes to kidney injury and fibrosis in diabetes.

Main Methods:

  • Examined Nox5 expression in human kidney biopsies from diabetic patients.
  • Utilized human mesangial cells and an inducible human Nox5 transgenic mouse model exposed to streptozotocin-induced diabetes.
  • Assessed ROS production, profibrotic/proinflammatory mediators, and markers of glomerulosclerosis.

Main Results:

  • Nox5 expression was increased in glomeruli of diabetic kidneys, specifically in mesangial cells.
  • Silencing Nox5 in human mesangial cells reduced ROS production and profibrotic/proinflammatory mediator expression.
  • Overexpression of Nox5 in mice accelerated glomerulosclerosis, mesangial expansion, ECM accumulation, and inflammation.

Conclusions:

  • Nox5 plays a significant role in promoting the progression of diabetic nephropathy.
  • Nox5-derived ROS contribute to kidney damage, fibrosis, and inflammation in diabetes.

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