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Updated: May 5, 2026

Glomerular Outgrowth as an Ex Vivo Assay to Analyze Pathways Involved in Parietal Epithelial Cell Activation
Published on: August 19, 2020
Rat glomerular mesangial cells synthesize basic fibroblast growth factor. Release, upregulated synthesis, and
1Department of Medicine, University of Washington Medical Center, Seattle 98195.
Abstract:
Mesangial injury and cell proliferation are frequent findings in various glomerular diseases in man. Previous studies have demonstrated that basic fibroblast growth factor (bFGF) is a potent mesangial cell mitogen in vitro. To further elucidate the role of bFGF in rat mesangial cell (RMC) proliferation, we examined whether RMC synthesize bFGF in vitro and whether bFGF is involved in mesangial proliferation in vivo. Cultured RMC expressed bFGF protein (23, 21.5, and 18 kD forms) and bFGF mRNA, and released biologically active bFGF into the culture medium after antibody- and complement-mediated injury. Normal rat glomeruli in vivo contained no detectable bFGF mRNA, but bFGF protein (23 and 21.5 kD) could be demonstrated, which immunolocalized to the mesangium. Glomerular bFGF decreased markedly during the acute phase of glomerulonephritis induced by anti-Thy 1.1 antibody, compatible with mesangial bFGF release after complement-mediated mesangiolysis. During the subsequent mesangial proliferative phase, glomerular bFGF protein and mRNA increased above normal. Intrarenal infusion of heparin did not affect the bFGF immunostaining of glomeruli at this stage, indicating a predominantly intracellular localization of the bFGF. The capability of bFGF to mediate proliferation in the anti-Thy 1.1 model was further supported by experiments in which intravenous bFGF given 24 h after a subnephritogenic dose of anti-Thy 1.1 antibody led to a 4.9- to 5.1-fold increase in glomerular cell proliferation (with > 60% of the cells identified as mesangial cells by double immunolabeling). No such increase was observed in normal rats injected with bFGF. These data show that mesangial cells produce and release bFGF after injury and that bFGF is mitogenic for injured mesangial cells in vivo. Release of mesangial cell bFGF thus may be an important mechanism involved in the initiation of mesangial cell proliferation in vivo.
Insights
Mesangial cells produce and release basic fibroblast growth factor (bFGF) after injury. This released bFGF acts as a mitogen, driving mesangial cell proliferation in glomerular diseases.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Mesangial injury and proliferation are hallmarks of glomerular diseases.
- Basic fibroblast growth factor (bFGF) is known to be a potent mitogen for mesangial cells in vitro.
Purpose of the Study:
- To investigate if rat mesangial cells (RMC) synthesize bFGF in vitro.
- To determine the role of bFGF in mesangial cell proliferation in vivo.
Main Methods:
- Cultured RMC were analyzed for bFGF expression and release after injury.
- Glomeruli from normal and anti-Thy 1.1 antibody-induced glomerulonephritis rats were examined for bFGF mRNA and protein.
- Intravenous bFGF administration was used to assess its proliferative effect in vivo.
Main Results:
- Cultured RMC expressed and released active bFGF after injury.
- Glomerular bFGF levels changed during glomerulonephritis, decreasing acutely and increasing during proliferation.
- Exogenous bFGF significantly increased glomerular cell proliferation in an injury model.
Conclusions:
- Mesangial cells produce and release bFGF following injury.
- bFGF is a key mediator of mesangial cell proliferation in vivo during glomerular disease.
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