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Published on: August 20, 2021
Platelet-derived growth factor-D promotes fibrogenesis of cardiac fibroblasts
Tieqiang Zhao1, Wenyuan Zhao, Yuanjian Chen
1Division of Cardiovascular Diseases, Department of Medicine, University of Tennessee Health Science Center, Memphis, TN 38163, USA.
Insights
Platelet-derived growth factor-D (PDGF-D) promotes cardiac fibrosis by increasing fibroblast activity and collagen production. This process is mediated by the transforming growth factor-beta (TGF-β) pathway, suggesting PDGFR blockade as a potential therapy.
Area of Science:
- Cardiovascular Biology
- Fibrosis Research
- Molecular Medicine
Background:
- Platelet-derived growth factor-D (PDGF-D) is implicated in cardiac fibrosis, with elevated levels observed in infarcted hearts.
- Previous studies indicated PDGFR-β, primarily on fibroblasts, is involved, suggesting a role for PDGF-D in cardiac fibrogenesis.
Purpose of the Study:
- To elucidate the molecular mechanisms by which PDGF-D contributes to cardiac fibrogenesis.
- To investigate PDGF-D's effects on fibroblast proliferation, differentiation, collagen turnover, and the TGF-β pathway.
Main Methods:
- Primary rat cardiac fibroblasts were isolated and treated with PDGF-D (200 ng/ml).
- Assessed fibroblast proliferation, myofibroblast differentiation, and type I collagen secretion.
- Analyzed matrix metalloproteinases (MMPs) and their inhibitors (TIMPs), and TGF-β1 synthesis, using TGF-β1 small-interfering RNA (siRNA) for blockade.
Main Results:
- PDGF-D significantly increased fibroblast proliferation, myofibroblast differentiation, and type I collagen secretion.
- Elevated MMP-1, MMP-2, MMP-9, TIMP-1, and TIMP-2 levels were observed post-PDGF-D treatment.
- PDGF-D enhanced TGF-β1 synthesis, which was blocked by siRNA; TGF-β blockade abolished PDGF-D's stimulatory effects on fibroblasts and collagen synthesis.
- TGF-β1 siRNA suppressed PDGF-D synthesis, indicating a positive feedback loop.
Conclusions:
- PDGF-D promotes cardiac fibrogenesis via fibroblast activation, collagen synthesis, and modulation of MMP/TIMP balance.
- The profibrotic effects of PDGF-D are critically mediated through the TGF-β1 pathway, which exhibits positive feedback on PDGF-D.
- These findings highlight the potential of targeting the PDGFR pathway for therapeutic intervention in cardiac interstitial fibrosis.
Abstract:
Platelet-derived growth factor (PDGF)-D is a newly recognized member of the PDGF family with its role just now being understood. Our previous study shows that PDGF-D and its receptors (PDGFR-β) are significantly increased in the infarcted heart, where PDGFR-β is primarily expressed by fibroblasts, indicating the involvement of PDGF-D in the development of cardiac fibrosis. In continuing with these findings, the current study explored the molecular basis of PDGF-D on fibrogenesis. Rat cardiac fibroblasts were isolated and treated with PDGF-D (200 ng/ml medium). The potential regulation of PDGF-D on fibroblast growth, phenotype change, collagen turnover, and the transforming growth factor (TGF)-β pathway were explored. We found: 1) PDGF-D significantly elevated cardiac fibroblast proliferation, myofibroblast (myoFb) differentiation, and type I collagen secretion; 2) matrix metalloproteinase (MMP)-1, MMP-2, and MMP-9 protein levels were significantly elevated in PDGF-D-treated cells, which were coincident with increased expressions of tissue inhibitor of metalloproteinase (TIMP)-1 and TIMP-2; 3) PDGF-D significantly enhanced TGF-β1 synthesis, which was eliminated by TGF-β blockade with small-interfering RNA (siRNA); 4) the stimulatory role of PDGF-D on fibroblast proliferation and collagen synthesis was abolished by TGF-β blockade; and 5) TGF-β siRNA treatment significantly suppressed PDGF-D synthesis in fibroblasts. These observations indicate that PDGF-D promotes fibrogenesis through multiple mechanisms. Coelevations of TIMPs and MMPs counterbalance collagen degradation. The profibrogenic role of PDGF-D is mediated through activation of the TGF-β1 pathway. TGF-β1 exerts positive feedback on PDGF-D synthesis. These findings suggest the potential therapeutic effect of PDGFR blockade on interstitial fibrosis in the infarcted heart.
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