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Glucose-Induced Reactive Oxygen Species Cause Apoptosis of Podocytes and Podocyte Depletion at the Onset of Diabetic Nephropathy

Diabetes · 2006 · Vol. 55(1) · pp. 225–233
Katalin SusztákAmanda C. RaffMario SchifferErwin P. Böttinger

Abstract

Diabetic nephropathy is the most common cause of end-stage renal disease in the U.S. Recent studies demonstrate that loss of podocytes is an early feature of diabetic nephropathy that predicts its progressive course. Cause and consequences of podocyte loss during early diabetic nephropathy remain poorly understood. Here, we demonstrate that podocyte apoptosis increased sharply with onset of hyperglycemia in Ins2(Akita) (Akita) mice with type 1 diabetes and Lepr(db/db) (db/db) mice with obesity and type 2 diabetes. Podocyte apoptosis coincided with the onset of urinary albumin excretion (UAE) and preceded significant losses of podocytes in Akita (37% reduction) and db/db (27% reduction) mice. Increased extracellular glucose (30 mmol/l) rapidly stimulated generation of intracellular reactive oxygen species (ROS) through NADPH oxidase and mitochondrial pathways and led to activation of proapoptotic p38 mitogen-activated protein kinase and caspase 3 and to apoptosis of conditionally immortalized podocytes in vitro. Chronic inhibition of NADPH oxidase prevented podocyte apoptosis and ameliorated podocyte depletion, UAE, and mesangial matrix expansion in db/db mice. In conclusion, our results demonstrate for the first time that glucose-induced ROS production initiates podocyte apoptosis and podocyte depletion in vitro and in vivo and suggest that podocyte apoptosis/depletion represents a novel early pathomechanism(s) leading to diabetic nephropathy in murine type 1 and type 2 diabetic models.

Renal Diseases and GlomerulopathiesChronic Kidney Disease and DiabetesAdvanced Glycation End Products researchPodocyteDiabetic nephropathyEndocrinologyInternal medicineReactive oxygen speciesNADPH oxidaseApoptosisNephropathyDiabetes mellitusBiology

MeSH terms

AlbuminuriaAnimalsBlood GlucoseDiabetes Mellitus, Type 1Diabetes Mellitus, Type 2Diabetic NephropathiesGlomerular MesangiumMaleApoptosisReactive Oxygen SpeciesNADPH Oxidasesp38 Mitogen-Activated Protein KinasesPodocytesMice

Funding

  • American Society of Nephrology
  • University of Minnesota
  • National Institutes of Health
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Cited by
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References
Diabetic kidney disease in the<i>db</i>/<i>db</i>mouse
American Journal of Physiology-Renal Physiology · 2003 · 520 citations
TGF-ß Signaling in Renal Disease
Journal of the American Society of Nephrology · 2002 · 718 citations
Urinary excretion of viable podocytes in health and renal disease
American Journal of Physiology-Renal Physiology · 2003 · 336 citations
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Glucose-Induced Reactive Oxygen Species Cause Apoptosis of Podocytes and Podocyte Depletion at the Onset of Diabetic Nephropathy · Scinovex