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Podocyte Depletion Causes Glomerulosclerosis

Journal of the American Society of Nephrology · 2005 · Vol. 16(10) · pp. 2941–2952
Bryan L. WharramMeera GoyalJocelyn WigginsSilja K. SandenSabiha M. HussainWanda E. FilipiakThomas L. SaundersRobert C. DyskoKenji KohnoLawrence B. HolzmanRoger C. Wiggins

Abstract

Glomerular injury and proteinuria in diabetes (types 1 and 2) and IgA nephropathy is related to the degree of podocyte depletion in humans. For determining the causal relationship between podocyte depletion and glomerulosclerosis, a transgenic rat strain in which the human diphtheria toxin receptor is specifically expressed in podocytes was developed. The rodent homologue does not act as a diphtheria toxin (DT) receptor, thereby making rodents resistant to DT. Injection of DT into transgenic rats but not wild-type rats resulted in dose-dependent podocyte depletion from glomeruli. Three stages of glomerular injury caused by podocyte depletion were identified: Stage 1, 0 to 20% depletion showed mesangial expansion, transient proteinuria and normal renal function; stage 2, 21 to 40% depletion showed mesangial expansion, capsular adhesions (synechiae), focal segmental glomerulosclerosis, mild persistent proteinuria, and normal renal function; and stage 3, >40% podocyte depletion showed segmental to global glomerulosclerosis with sustained high-grade proteinuria and reduced renal function. These pathophysiologic consequences of podocyte depletion parallel similar degrees of podocyte depletion, glomerulosclerosis, and proteinuria seen in diabetic glomerulosclerosis. This model system provides strong support for the concept that podocyte depletion could be a major mechanism driving glomerulosclerosis and progressive loss of renal function in human glomerular diseases.

Renal Diseases and GlomerulopathiesPancreatic function and diabetesChronic Kidney Disease and DiabetesPodocyteGlomerulosclerosisFocal segmental glomerulosclerosisProteinuriaDiabetic nephropathyEndocrinologyInternal medicineNephropathyMedicineKidney

MeSH terms

AnimalsCell CountDiphtheria ToxinGlomerulosclerosis, Focal SegmentalHumansRats, Inbred F344Receptors, Cell SurfaceTransgenesIntercellular Signaling Peptides and ProteinsPodocytesRatsHeparin-binding EGF-like Growth Factor

Funding

  • Michigan Economic Development Corporation
  • National Institutes of Health
  • Michigan Technology Tri-Corridor
Citations
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Cited by
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References
The hyperfiltration theory: A paradigm shift in nephrology
Kidney International · 1996 · 869 citations
The Classification of Glomerulonephritis in Systemic Lupus Erythematosus Revisited
Journal of the American Society of Nephrology · 2004 · 1,987 citations
Urinary excretion of viable podocytes in health and renal disease
American Journal of Physiology-Renal Physiology · 2003 · 336 citations
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