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VEGF ameliorates pulmonary hypertension through inhibition of endothelial apoptosis in experimental lung fibrosis in rats
Laszlo Farkas, Daniela Farkas, Kjetil Ask, Antje Möller, Jack Gauldie, Peter Margetts, Mark Inman, Martin Kolb
Laszlo Farkas, Daniela Farkas, Kjetil Ask, Antje Möller, Jack Gauldie, Peter Margetts, Mark Inman, Martin Kolb
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Research Article Pulmonology

VEGF ameliorates pulmonary hypertension through inhibition of endothelial apoptosis in experimental lung fibrosis in rats

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Abstract

Idiopathic pulmonary fibrosis (IPF) can lead to the development of secondary pulmonary hypertension (PH) and ultimately death. Despite this known association, the precise mechanism of disease remains unknown. Using a rat model of IPF, we explored the role of the proangiogenic and antiapoptotic growth factor VEGF in the vascular remodeling that underlies PH. In this model, adenoviral delivery of active TGF-β1 induces pulmonary arterial remodeling, loss of the microvasculature in fibrotic areas, and increased pulmonary arterial pressure (PAP). Immunohistochemistry and mRNA analysis revealed decreased levels of VEGF and its receptor, which were inversely correlated with PAP and endothelial cell apoptosis in both the micro- and macrovasculature. Treatment of IPF rats with adenoviral delivery of VEGF resulted in reduced endothelial apoptosis, increased vascularization, and improved PAP due to reduced remodeling but worsened PF. These data show that experimental pulmonary fibrosis (PF) leads to loss of the microvasculature through increased apoptosis and to remodeling of the pulmonary arteries, with both processes resulting in PH. As administration of VEGF ameliorated the PH in this model but concomitantly aggravated the fibrogenic process, VEGF-based therapies should be used with caution.

Authors

Laszlo Farkas, Daniela Farkas, Kjetil Ask, Antje Möller, Jack Gauldie, Peter Margetts, Mark Inman, Martin Kolb

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Figure 6

Increased PF following AdTGF-β1/AdVEGF compared with AdTGF-β1/AdDL70 administration.

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Increased PF following AdTGF-β1/AdVEGF compared with AdTGF-β1/AdDL70 adm...
(A and B) AdTGF-β1/AdVEGF animals have an additionally increased PF score (A) and elevated elastance (B) compared with AdTGF-β1/AdDL70. Values are expressed as differences from AdTGF-β1/AdDL70. (C and D) Multiple fibroblastic foci (asterisks), hyperplastic epithelial cells (arrows), and extensive deposition of matrix in lungs of AdTGF-β1/AdVEGF animals at day 14. H&E staining. Original magnification, ×100 (C); ×400 (D). Scale bars: 200 μm (C); 50 μm (D). (E–J) Characterization of primary human lung fibroblasts as vimentin-positive (E–G) and collagen-1–positive (H–J). Original magnification, ×400. Scale bars: 50 μm. (K and L) Lung fibroblasts showed enhanced collagen-1 expression after 24-hour stimulation with 5 ng/ml human TGF-β1 and an additional increase following 30 ng/ml human VEGF and 5 ng/ml human TGF-β1. Collagen-1 protein was not induced after stimulation with VEGF alone. (K) densitometry of 2 independent experiments (n = 3 each) of 2 fibroblast lines. Values are given as ratio of collagen-1 to α-tubulin density. *P < 0.05; **P < 0.01, 1-way ANOVA. (L) Representative Western blot showing collagen-1, α-SMA, and P-Smad2 induction after TGF-β1 or TGF-β1 and VEGF administration. α-tubulin was used as a loading control. Each condition is represented by 3 adjacent bands.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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