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NF-κB drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model

In the progression phase of idiopathic pulmonary fibrosis (IPF), the normal alveolar structure of the lung is lost and replaced by remodeled fibrotic tissue and by bronchiolized cystic airspaces. Although these are characteristic features of IPF, knowledge of specific interactions between these path...

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Autores principales: Sieber, Patrick, Schäfer, Anny, Lieberherr, Raphael, Caimi, Silvia L., Lüthi, Urs, Ryge, Jesper, Bergmann, Jan H., Le Goff, François, Stritt, Manuel, Blattmann, Peter, Renault, Bérengère, Rammelt, Patrick, Sempere, Bruno, Freti, Diego, Studer, Rolf, White, Eric S., Birker-Robaczewska, Magdalena, Boucher, Maxime, Nayler, Oliver
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9977429/
https://www.ncbi.nlm.nih.gov/pubmed/36520540
http://dx.doi.org/10.1172/jci.insight.154719
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author Sieber, Patrick
Schäfer, Anny
Lieberherr, Raphael
Caimi, Silvia L.
Lüthi, Urs
Ryge, Jesper
Bergmann, Jan H.
Le Goff, François
Stritt, Manuel
Blattmann, Peter
Renault, Bérengère
Rammelt, Patrick
Sempere, Bruno
Freti, Diego
Studer, Rolf
White, Eric S.
Birker-Robaczewska, Magdalena
Boucher, Maxime
Nayler, Oliver
author_facet Sieber, Patrick
Schäfer, Anny
Lieberherr, Raphael
Caimi, Silvia L.
Lüthi, Urs
Ryge, Jesper
Bergmann, Jan H.
Le Goff, François
Stritt, Manuel
Blattmann, Peter
Renault, Bérengère
Rammelt, Patrick
Sempere, Bruno
Freti, Diego
Studer, Rolf
White, Eric S.
Birker-Robaczewska, Magdalena
Boucher, Maxime
Nayler, Oliver
author_sort Sieber, Patrick
collection PubMed
description In the progression phase of idiopathic pulmonary fibrosis (IPF), the normal alveolar structure of the lung is lost and replaced by remodeled fibrotic tissue and by bronchiolized cystic airspaces. Although these are characteristic features of IPF, knowledge of specific interactions between these pathological processes is limited. Here, the interaction of lung epithelial and lung mesenchymal cells was investigated in a coculture model of human primary airway epithelial cells (EC) and lung fibroblasts (FB). Single-cell RNA sequencing revealed that the starting EC population was heterogenous and enriched for cells with a basal cell signature. Furthermore, fractions of the initial EC and FB populations adopted distinct pro-fibrotic cell differentiation states upon cocultivation, resembling specific cell populations that were previously identified in lungs of patients with IPF. Transcriptomic analysis revealed active NF-κB signaling early in the cocultured EC and FB, and the identified NF-κB expression signatures were found in “HAS1 High FB” and “PLIN2+ FB” populations from IPF patient lungs. Pharmacological blockade of NF-κB signaling attenuated specific phenotypic changes of EC and prevented FB-mediated interleukin-6, interleukin-8, and CXC chemokine ligand 6 cytokine secretion, as well as collagen α-1(I) chain and α–smooth muscle actin accumulation. Thus, we identified NF-κB as a potential mediator, linking epithelial pathobiology with fibrogenesis.
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spelling pubmed-99774292023-03-02 NF-κB drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model Sieber, Patrick Schäfer, Anny Lieberherr, Raphael Caimi, Silvia L. Lüthi, Urs Ryge, Jesper Bergmann, Jan H. Le Goff, François Stritt, Manuel Blattmann, Peter Renault, Bérengère Rammelt, Patrick Sempere, Bruno Freti, Diego Studer, Rolf White, Eric S. Birker-Robaczewska, Magdalena Boucher, Maxime Nayler, Oliver JCI Insight Research Article In the progression phase of idiopathic pulmonary fibrosis (IPF), the normal alveolar structure of the lung is lost and replaced by remodeled fibrotic tissue and by bronchiolized cystic airspaces. Although these are characteristic features of IPF, knowledge of specific interactions between these pathological processes is limited. Here, the interaction of lung epithelial and lung mesenchymal cells was investigated in a coculture model of human primary airway epithelial cells (EC) and lung fibroblasts (FB). Single-cell RNA sequencing revealed that the starting EC population was heterogenous and enriched for cells with a basal cell signature. Furthermore, fractions of the initial EC and FB populations adopted distinct pro-fibrotic cell differentiation states upon cocultivation, resembling specific cell populations that were previously identified in lungs of patients with IPF. Transcriptomic analysis revealed active NF-κB signaling early in the cocultured EC and FB, and the identified NF-κB expression signatures were found in “HAS1 High FB” and “PLIN2+ FB” populations from IPF patient lungs. Pharmacological blockade of NF-κB signaling attenuated specific phenotypic changes of EC and prevented FB-mediated interleukin-6, interleukin-8, and CXC chemokine ligand 6 cytokine secretion, as well as collagen α-1(I) chain and α–smooth muscle actin accumulation. Thus, we identified NF-κB as a potential mediator, linking epithelial pathobiology with fibrogenesis. American Society for Clinical Investigation 2023-02-08 /pmc/articles/PMC9977429/ /pubmed/36520540 http://dx.doi.org/10.1172/jci.insight.154719 Text en © 2023 Sieber et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Sieber, Patrick
Schäfer, Anny
Lieberherr, Raphael
Caimi, Silvia L.
Lüthi, Urs
Ryge, Jesper
Bergmann, Jan H.
Le Goff, François
Stritt, Manuel
Blattmann, Peter
Renault, Bérengère
Rammelt, Patrick
Sempere, Bruno
Freti, Diego
Studer, Rolf
White, Eric S.
Birker-Robaczewska, Magdalena
Boucher, Maxime
Nayler, Oliver
NF-κB drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model
title NF-κB drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model
title_full NF-κB drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model
title_fullStr NF-κB drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model
title_full_unstemmed NF-κB drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model
title_short NF-κB drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model
title_sort nf-κb drives epithelial-mesenchymal mechanisms of lung fibrosis in a translational lung cell model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9977429/
https://www.ncbi.nlm.nih.gov/pubmed/36520540
http://dx.doi.org/10.1172/jci.insight.154719
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