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Published on: November 10, 2021
The role of PDGF-D in healthy and fibrotic kidneys
Eva M Buhl1, Sonja Djudjaj2, Janka Babickova3
1Division of Nephrology, RWTH University of Aachen, Aachen, Germany; Institute of Pathology, RWTH University of Aachen, Aachen, Germany.
Abstract:
Platelet-derived growth factor (PDGF)-D, a specific PDGF receptor β (PDGFR-β) ligand, mediates mesangial proliferation in vitro and in vivo. However, its role in renal development, physiology, and fibrosis is relatively unknown. In healthy murine kidneys, PDGF-D was found to be expressed on renal mesenchymal cells (mesangial cells, fibroblasts, and vascular smooth muscle cells). During renal fibrosis, PDGF-D and its receptor PDGFR-β were markedly and similarly upregulated in both human and murine kidneys on activated mesenchymal cells, but PDGF-D was also expressed de novo in injured renal tubular cells. The functional role of PDGF-D was studied in Pdgfd-/- mice, which showed no obvious spontaneous renal phenotype at a young age or during aging. Compared with wild-type littermates, Pdgfd-/- mice had significantly reduced renal interstitial fibrosis in two models of renal scarring: unilateral ureteral obstruction and unilateral ischemia/reperfusion injury. This was associated with reduced phosphorylation of PDGFR-β and its downstream mediator p38. Systemic adenoviral overexpression of PDGF-D in healthy mice resulted in increased collagen deposition in the kidney interstitium. Thus, PDGF-D is upregulated in murine and human kidney fibrosis, may mediate renal scarring, and is dispensable for normal kidney development and physiological functions. PDGF-D may be a suitable therapeutic target to combat kidney fibrosis.
Insights
Platelet-derived growth factor-D (PDGF-D) is upregulated in kidney fibrosis and drives scarring. Blocking PDGF-D reduces kidney fibrosis, suggesting it
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Platelet-derived growth factor (PDGF)-D is a ligand for PDGF receptor β (PDGFR-β) and mediates mesangial proliferation.
- Its specific roles in renal development, physiology, and fibrosis remain largely uncharacterized.
Purpose of the Study:
- To investigate the role of PDGF-D in kidney development, physiology, and fibrosis.
Main Methods:
- Examined PDGF-D expression in healthy and fibrotic murine and human kidneys.
- Studied the function of PDGF-D using Pdgfd knockout mice and adenoviral overexpression models.
- Assessed renal interstitial fibrosis, PDGFR-β phosphorylation, and downstream signaling (p38).
Main Results:
- PDGF-D is expressed in mesenchymal cells in healthy kidneys and upregulated in activated mesenchymal and tubular cells during fibrosis.
- Pdgfd knockout mice exhibited significantly reduced renal interstitial fibrosis in response to injury.
- PDGF-D overexpression in healthy mice led to increased kidney interstitial collagen deposition.
Conclusions:
- PDGF-D is upregulated in kidney fibrosis and contributes to renal scarring.
- PDGF-D is not essential for normal kidney development or function.
- PDGF-D represents a potential therapeutic target for kidney fibrosis.
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