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An Efficient Sieving Method to Isolate Intact Glomeruli from Adult Rat Kidney
Published on: November 1, 2018
Pathophysiologic implications of reduced podocyte number in a rat model of progressive glomerular injury
Daniela Macconi1, Maria Bonomelli, Ariela Benigni
1Mario Negri Institute for Pharmacological Research, Via Gavazzeni 11, 24125 Bergamo, Italy. macconi@marionegri.it
Abstract:
Changes in podocyte number or density have been suggested to play an important role in renal disease progression. Here, we investigated the temporal relationship between glomerular podocyte number and development of proteinuria and glomerulosclerosis in the male Munich Wistar Fromter (MWF) rat. We also assessed whether changes in podocyte number affect podocyte function and focused specifically on the slit diaphragm-associated protein nephrin. Age-matched Wistar rats were used as controls. Estimation of podocyte number per glomerulus was determined by digital morphometry of WT1-positive cells. MWF rats developed moderate hypertension, massive proteinuria, and glomerulosclerosis with age. Glomerular hypertrophy was already observed at 10 weeks of age and progressively increased thereafter. By contrast, mean podocyte number per glomerulus was lower than normal in young animals and further decreased with time. As a consequence, the capillary tuft volume per podocyte was more than threefold increased in older rats. Electron microscopy showed important changes in podocyte structure of MWF rats, with expansion of podocyte bodies surrounding glomerular filtration membrane. Glomerular nephrin expression was markedly altered in MWF rats and inversely correlated with both podocyte loss and proteinuria. Our findings suggest that reduction in podocyte number is an important determinant of podocyte dysfunction and progressive impairment of the glomerular permselectivity that lead to the development of massive proteinuria and ultimately to renal scarring.
Insights
Reduced podocyte number in male Munich Wistar Fromter rats contributes to kidney disease progression. This loss impairs podocyte function, leading to proteinuria and glomerulosclerosis.
Area of Science:
- Nephrology
- Renal Pathology
- Cell Biology
Background:
- Podocyte number is implicated in kidney disease progression.
- The relationship between podocyte count and disease development requires further investigation.
Purpose of the Study:
- To investigate the temporal link between glomerular podocyte number and the development of proteinuria and glomerulosclerosis in male Munich Wistar Fromter (MWF) rats.
- To assess if alterations in podocyte number affect podocyte function, focusing on nephrin expression.
Main Methods:
- Digital morphometry of WT1-positive cells to estimate podocyte number.
- Age-matched Wistar rats served as controls.
- Electron microscopy was used to examine podocyte structure and glomerular changes.
Main Results:
- MWF rats exhibited hypertension, proteinuria, glomerulosclerosis, and glomerular hypertrophy with age.
- Podocyte number per glomerulus was reduced in young MWF rats and decreased over time.
- Capillary tuft volume per podocyte increased significantly, and glomerular nephrin expression was altered, correlating inversely with podocyte loss and proteinuria.
Conclusions:
- A reduction in podocyte number is a key factor in podocyte dysfunction.
- Progressive impairment of glomerular permselectivity, driven by podocyte loss, leads to proteinuria and renal scarring.
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