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Pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma

Myofibroblast accumulation, subepithelial fibrosis, and vascular remodeling are complicating features of chronic asthma, but the mechanisms are not clear. Platelet-derived growth factors (PDGFs) regulate the fate and function of various mesenchymal cells and have been implicated as mediators of lung...

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Autores principales: Johnson, Jill R., Folestad, Erika, Rowley, Jessica E., Noll, Elisa M., Walker, Simone A., Lloyd, Clare M., Rankin, Sara M., Pietras, Kristian, Eriksson, Ulf, Fuxe, Jonas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Physiological Society 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4385988/
https://www.ncbi.nlm.nih.gov/pubmed/25637607
http://dx.doi.org/10.1152/ajplung.00286.2014
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author Johnson, Jill R.
Folestad, Erika
Rowley, Jessica E.
Noll, Elisa M.
Walker, Simone A.
Lloyd, Clare M.
Rankin, Sara M.
Pietras, Kristian
Eriksson, Ulf
Fuxe, Jonas
author_facet Johnson, Jill R.
Folestad, Erika
Rowley, Jessica E.
Noll, Elisa M.
Walker, Simone A.
Lloyd, Clare M.
Rankin, Sara M.
Pietras, Kristian
Eriksson, Ulf
Fuxe, Jonas
author_sort Johnson, Jill R.
collection PubMed
description Myofibroblast accumulation, subepithelial fibrosis, and vascular remodeling are complicating features of chronic asthma, but the mechanisms are not clear. Platelet-derived growth factors (PDGFs) regulate the fate and function of various mesenchymal cells and have been implicated as mediators of lung fibrosis. However, it is not known whether PDGF-BB signaling via PDGFRβ, which is critical for the recruitment of pericytes to blood vessels, plays a role in airway remodeling in chronic asthma. In the present study, we used a selective PDGFRβ inhibitor (CP-673451) to investigate the role of PDGFRβ signaling in the development of airway remodeling and lung dysfunction in an established mouse model of house dust mite-induced chronic allergic asthma. Unexpectedly, we found that pharmacological inhibition of PDGFRβ signaling in the context of chronic aeroallergen exposure led to exacerbated lung dysfunction and airway smooth muscle thickening. Further studies revealed that the inflammatory response to aeroallergen challenge in mice was associated with decreased PDGF-BB expression and the loss of pericytes from the airway microvasculature. In parallel, cells positive for pericyte markers accumulated in the subepithelial region of chronically inflamed airways. This process was exacerbated in animals treated with CP-673451. The results indicate that perturbed PDGF-BB/PDGFRβ signaling and pericyte accumulation in the airway wall may contribute to airway remodeling in chronic allergic asthma.
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spelling pubmed-43859882015-04-14 Pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma Johnson, Jill R. Folestad, Erika Rowley, Jessica E. Noll, Elisa M. Walker, Simone A. Lloyd, Clare M. Rankin, Sara M. Pietras, Kristian Eriksson, Ulf Fuxe, Jonas Am J Physiol Lung Cell Mol Physiol Articles Myofibroblast accumulation, subepithelial fibrosis, and vascular remodeling are complicating features of chronic asthma, but the mechanisms are not clear. Platelet-derived growth factors (PDGFs) regulate the fate and function of various mesenchymal cells and have been implicated as mediators of lung fibrosis. However, it is not known whether PDGF-BB signaling via PDGFRβ, which is critical for the recruitment of pericytes to blood vessels, plays a role in airway remodeling in chronic asthma. In the present study, we used a selective PDGFRβ inhibitor (CP-673451) to investigate the role of PDGFRβ signaling in the development of airway remodeling and lung dysfunction in an established mouse model of house dust mite-induced chronic allergic asthma. Unexpectedly, we found that pharmacological inhibition of PDGFRβ signaling in the context of chronic aeroallergen exposure led to exacerbated lung dysfunction and airway smooth muscle thickening. Further studies revealed that the inflammatory response to aeroallergen challenge in mice was associated with decreased PDGF-BB expression and the loss of pericytes from the airway microvasculature. In parallel, cells positive for pericyte markers accumulated in the subepithelial region of chronically inflamed airways. This process was exacerbated in animals treated with CP-673451. The results indicate that perturbed PDGF-BB/PDGFRβ signaling and pericyte accumulation in the airway wall may contribute to airway remodeling in chronic allergic asthma. American Physiological Society 2015-01-30 2015-04-01 /pmc/articles/PMC4385988/ /pubmed/25637607 http://dx.doi.org/10.1152/ajplung.00286.2014 Text en Copyright © 2015 the American Physiological Society Licensed under Creative Commons Attribution CC-BY 3.0 (http://creativecommons.org/licenses/by/3.0/deed.en_US) : © the American Physiological Society.
spellingShingle Articles
Johnson, Jill R.
Folestad, Erika
Rowley, Jessica E.
Noll, Elisa M.
Walker, Simone A.
Lloyd, Clare M.
Rankin, Sara M.
Pietras, Kristian
Eriksson, Ulf
Fuxe, Jonas
Pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma
title Pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma
title_full Pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma
title_fullStr Pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma
title_full_unstemmed Pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma
title_short Pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma
title_sort pericytes contribute to airway remodeling in a mouse model of chronic allergic asthma
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4385988/
https://www.ncbi.nlm.nih.gov/pubmed/25637607
http://dx.doi.org/10.1152/ajplung.00286.2014
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