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Updated: Jul 24, 2026

Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
Pathways to nephron loss starting from glomerular diseases-insights from animal models
1Institute of Anatomy and Cell Biology, University of Heidelberg, Heidelberg, Germany. wilhelm.kriz@urz.uni-heidelberg.de
Abstract:
Studies of glomerular diseases in animal models show that progression toward nephron loss starts with extracapillary lesions, whereby podocytes play the central role. If injuries remain bound within the endocapillary compartment, they will undergo recovery or be repaired by scaring. Degenerative, inflammatory and dysregulative mechanisms leading to nephron loss are distinguished. In addition to several other unique features, the dysregulative mechanisms leading to collapsing glomerulopathy are particular in that glomeruli and tubules are affected in parallel. In contrast, in degenerative and inflammatory diseases, tubular injury is secondary to glomerular lesions. In both of the latter groups of diseases, the progression starts in the glomerulus with the loss of the separation between the tuft and Bowman's capsule by forming cell bridges (parietal cells and/or podocytes) between the glomerular and the parietal basement membranes. Cell bridges develop into tuft adhesions to Bowman's capsule, which initiate the formation of crescents, either by misdirected filtration (proteinaceous crescents) or by epithelial cell proliferation (cellular crescents). Crescents may spread over the entire circumference of the glomerulus and, via the glomerulotubular junction, may extend onto the tubule. Two mechanisms concerning the transfer of a glomerular injury onto the tubulointerstitium are discussed: (1) direct encroachment of extracapillary lesions and (2) protein leakage into tubular urine, resulting in injury to the tubule and the interstitium. There is evidence that direct encroachment is the crucial mechanism. Progression of chronic renal disease is underlain by a vicious cycle which passes on the damage from lost and/or damaged nephrons to so far healthy nephrons. Presently, two mechanisms are discussed: (1) the loss of nephrons leads to compensatory mechanisms in the remaining nephrons (glomerular hypertension, hyperfiltration, hypertrophy) which increase their vulnerability to any further challenge (overload hypothesis); and (2) a proteinuric glomerular disease leads, by some way or another, to tubulointerstitial inflammation and fibrosis, accounting for the further deterioration of renal function (fibrosis hypothesis). So far, no convincing evidence has been published that in primary glomerular diseases fibrosis is harmful to healthy nephrons. The potential of glomerular injuries to regenerate or to be repaired by scaring is limited. The only option for extracapillary injuries with tuft adhesion is repair by formation of a segmental adherent scar (i.e., segmental glomerulosclerosis).
Insights
Glomerular diseases initiate nephron loss via extracapillary lesions, with podocytes central to progression. Injury mechanisms include direct encroachment and protein leakage, driving chronic kidney disease through overload or fibrosis hypotheses.
Area of Science:
- Nephrology
- Pathology
- Animal Models
Background:
- Glomerular diseases can lead to nephron loss through various injury mechanisms.
- Podocytes are identified as playing a crucial role in the progression of these diseases.
Purpose of the Study:
- To distinguish between degenerative, inflammatory, and dysregulative mechanisms of nephron loss in glomerular diseases.
- To elucidate the pathways by which glomerular injury progresses to tubulointerstitial damage and chronic kidney disease.
Main Methods:
- Analysis of glomerular disease progression in animal models.
- Distinguishing between endocapillary and extracapillary lesions.
- Investigating mechanisms of injury transfer from glomeruli to tubules.
Main Results:
- Extracapillary lesions, particularly those involving podocytes, are key drivers of nephron loss.
- Two primary mechanisms for injury transfer to the tubulointerstitium are direct encroachment and protein leakage, with direct encroachment appearing more critical.
- Chronic kidney disease progression involves a vicious cycle, potentially driven by compensatory mechanisms in remaining nephrons (overload hypothesis) or tubulointerstitial inflammation (fibrosis hypothesis).
Conclusions:
- Understanding the distinct mechanisms of glomerular injury is crucial for comprehending chronic kidney disease progression.
- The role of podocytes and extracapillary lesions highlights potential therapeutic targets.
- Further research is needed to fully understand the interplay between glomerular injury, tubulointerstitial damage, and the progression of renal fibrosis.
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