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Autocrine growth regulation of human glomerular mesangial cells is primarily mediated by basic fibroblast growth
A Francki1, P Uciechowski, J Floege
1Institute of Clinical Molecular Pharmacology, Medical School Hannover, Germany.
Abstract:
For various forms of human glomerulonephritis a close relationship between inflammatory injury and a local mesangial proliferative response has been described. Herein, we used primary cultures of human glomerular mesangial cells (HMCs) from five different donors to determine the autocrine growth-inducing capacity of their supernatants after stimulation with different cytokines and lipopolysaccharide (LPS) to determine whether this effect is due to basic fibroblast growth factor (bFGF). The basal growth-inducing capacity of supernatants collected from serum-free cultured HMC and concentrated 100-fold above a cut-off size of 10 kd was significantly increased by interleukin (IL)-1 beta, platelet-derived growth factor (PDGF), and LPS up to 15-fold, but not by IL-1 alpha, IL-6, or bFGF. An anti-human bFGF antibody blocked the majority of IL-1 or LPS-induced proliferative effect of supernatants; complete inhibition was achieved by a combination of anti-human bFGF- and anti-human platelet-derived growth factor antibodies. HMCs express different isoforms of bFGF (18, 21.5, and 24 kd) in membrane, cytosolic, and nuclear fractions. All isoforms of bFGF were found in the nuclear fraction of HMC, whether stimulated or not. Immunoblots for bFGF protein of HMC demonstrated that only a approximate to 16 kd bFGF protein was released into HMC supernatants after stimulation with IL-1 beta, platelet-derived growth factor-BB, and LPS. The 18 kd isoform of bFGF accumulated in the membranes but was not released after stimulation with IL-1 alpha, IL-6, and bFGF, suggesting that its release was a prerequisite for autocrine growth stimulation. By means of reverse transcription polymerase chain reaction controlled by Southern blots, bFGF-mRNA expression of HMC was enhanced by IL-1 alpha, IL-1 beta, and LPS. Finally, we were able to show that HMCs are expressing bFGF receptors. In summary, our data demonstrate for the first time that the autocrine proliferative response of HMC to major inflammatory factors may primarily be mediated by bFGF.
Insights
Human glomerular mesangial cells (HMCs) release basic fibroblast growth factor (bFGF) in response to inflammatory stimuli, driving autocrine cell proliferation. This study identifies bFGF as a key mediator of HMC growth in glomerulonephritis.
Area of Science:
- Nephrology
- Cell Biology
- Immunology
Background:
- Glomerulonephritis involves inflammatory injury and mesangial cell proliferation.
- The autocrine growth mechanisms of human mesangial cells (HMCs) are not fully understood.
Purpose of the Study:
- To investigate the autocrine growth-inducing capacity of HMC supernatants after stimulation.
- To determine if basic fibroblast growth factor (bFGF) mediates this proliferative effect.
Main Methods:
- Primary HMCs from five donors were cultured and stimulated with cytokines and LPS.
- Supernatants were analyzed for growth-inducing capacity and bFGF content.
- Antibodies against bFGF and PDGF were used to block proliferative effects.
- bFGF expression and receptor presence were assessed via RT-PCR and Southern blots.
Main Results:
- Supernatants from stimulated HMCs showed significantly increased growth-inducing capacity.
- Interleukin (IL)-1 beta, platelet-derived growth factor (PDGF), and LPS enhanced proliferation.
- Anti-bFGF antibodies blocked most of the IL-1 or LPS-induced proliferation.
- HMCs express multiple bFGF isoforms and bFGF receptors.
- Specific bFGF isoforms were released upon stimulation, suggesting a prerequisite for autocrine growth.
Conclusions:
- The autocrine proliferative response of HMCs to inflammatory factors is primarily mediated by bFGF.
- bFGF release is a critical step in HMC proliferation during inflammatory conditions like glomerulonephritis.
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