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Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
Agonistic anti-Fas antibodies induce glomerular cell apoptosis in mice in vivo
S González-Cuadrado1, C Lorz, R García del Moral
1Laboratorio de Nefrología, Fundación Jiménez Díaz, Universidad Autónoma, Madrid, Spain.
Abstract:
Recent studies suggest that apoptotic cell death regulates the cell complement in glomerular diseases. However, little is-known about the factors that promote glomerular cell apoptosis. Activation of the Fas receptor by the Fas ligand or agonistic antibodies triggers apoptosis in some cell types that express Fas. Cultured human mesangial cell are among the cells that undergo apoptosis upon Fas activation, but it is unclear whether mesangial cells are sensitive to death induced by Fas in vivo. We have now explored the role of Fas in experimental glomerular injury. Murine mesangial cells in culture express fas and undergo apoptosis when stimulated with the Jo2 agonistic anti-Fas mAb. A fas mRNA transcript is present in normal murine kidney and freshly isolated glomeruli. Balb-c mice developed hematuria and proteinuria within 24 hours of the intraperitoneal injection of 10 micrograms Jo2 anti-Fas mAb. In addition to liver cell apoptosis, glomerular cell apoptosis and mesangial cell depletion were evident in the kidney at three hours and more pronounced at 24 hours. Glomerular and liver injury were not prevented by decomplementation. These data suggest that Fas activation in vivo by specific antibodies induces glomerular and mesangial cell apoptosis in mice.
Insights
Fas activation by specific antibodies induces glomerular and mesangial cell apoptosis in mice, contributing to experimental glomerular injury. This highlights the role of Fas signaling in kidney disease pathogenesis.
Area of Science:
- Nephrology
- Immunology
- Cell Biology
Background:
- Apoptotic cell death is implicated in glomerular diseases, but factors promoting glomerular cell apoptosis remain unclear.
- Fas receptor activation triggers apoptosis in Fas-expressing cells, yet its in vivo role in mesangial cells is unknown.
Purpose of the Study:
- To investigate the role of Fas signaling in experimental glomerular injury.
- To determine if mesangial cells are sensitive to Fas-induced apoptosis in vivo.
Main Methods:
- Murine mesangial cells were cultured and stimulated with an agonistic anti-Fas antibody (Jo2).
- Fas mRNA expression was assessed in normal murine kidneys and glomeruli.
- Balb/c mice were injected with Jo2 anti-Fas mAb to induce experimental glomerular injury.
Main Results:
- Cultured mesangial cells underwent apoptosis upon Fas activation.
- Fas mRNA was detected in murine kidneys and glomeruli.
- Jo2 injection induced hematuria, proteinuria, glomerular and mesangial cell apoptosis, and mesangial cell depletion in mice.
Conclusions:
- Fas activation in vivo by specific antibodies induces glomerular and mesangial cell apoptosis in mice.
- These findings suggest Fas signaling plays a significant role in the pathogenesis of experimental glomerular injury.

