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Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures

INTRODUCTION: Interstitial lung disease (ILD) is a heterogenous group of lung disorders where destruction and incomplete regeneration of the lung parenchyma often results in persistent architectural distortion of the pulmonary scaffold. Continuous mesenchyme-centered, disease-relevant signaling like...

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Autores principales: Kastlmeier, Miriam T., Gonzalez-Rodriguez, Erika, Cabanis, Phoebe, Guenther, Eva M., König, Ann-Christine, Han, Lianyong, Hauck, Stefanie M., See, Fenja, Asgharpour, Sara, Bukas, Christina, Burgstaller, Gerald, Piraud, Marie, Lehmann, Mareike, Hatz, Rudolf A., Behr, Jürgen, Stoeger, Tobias, Hilgendorff, Anne, Voss, Carola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10230276/
https://www.ncbi.nlm.nih.gov/pubmed/37266432
http://dx.doi.org/10.3389/fimmu.2023.1128239
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author Kastlmeier, Miriam T.
Gonzalez-Rodriguez, Erika
Cabanis, Phoebe
Guenther, Eva M.
König, Ann-Christine
Han, Lianyong
Hauck, Stefanie M.
See, Fenja
Asgharpour, Sara
Bukas, Christina
Burgstaller, Gerald
Piraud, Marie
Lehmann, Mareike
Hatz, Rudolf A.
Behr, Jürgen
Stoeger, Tobias
Hilgendorff, Anne
Voss, Carola
author_facet Kastlmeier, Miriam T.
Gonzalez-Rodriguez, Erika
Cabanis, Phoebe
Guenther, Eva M.
König, Ann-Christine
Han, Lianyong
Hauck, Stefanie M.
See, Fenja
Asgharpour, Sara
Bukas, Christina
Burgstaller, Gerald
Piraud, Marie
Lehmann, Mareike
Hatz, Rudolf A.
Behr, Jürgen
Stoeger, Tobias
Hilgendorff, Anne
Voss, Carola
author_sort Kastlmeier, Miriam T.
collection PubMed
description INTRODUCTION: Interstitial lung disease (ILD) is a heterogenous group of lung disorders where destruction and incomplete regeneration of the lung parenchyma often results in persistent architectural distortion of the pulmonary scaffold. Continuous mesenchyme-centered, disease-relevant signaling likely initiates and perpetuates the fibrotic remodeling process, specifically targeting the epithelial cell compartment, thereby destroying the gas exchange area. METHODS: With the aim of identifying functional mediators of the lung mesenchymal-epithelial crosstalk with potential as new targets for therapeutic strategies, we developed a 3D organoid co-culture model based on human induced pluripotent stem cell-derived alveolar epithelial type 2 cells that form alveolar organoids in presence of lung fibroblasts from fibrotic-ILD patients, in our study referring to cases of pulmonary fibrosis, as well as control cell line (IMR-90). RESULTS: While organoid formation capacity and size was comparable in the presence of fibrotic-ILD or control lung fibroblasts, metabolic activity was significantly increased in fibrotic-ILD co-cultures. Alveolar organoids cultured with fibrotic-ILD fibroblasts further demonstrated reduced stem cell function as reflected by reduced Surfactant Protein C gene expression together with an aberrant basaloid-prone differentiation program indicated by elevated Cadherin 2, Bone Morphogenic Protein 4 and Vimentin transcription. To screen for key mediators of the misguided mesenchymal-to-epithelial crosstalk with a focus on disease-relevant inflammatory processes, we used mass spectrometry and characterized the secretome of end stage fibrotic-ILD lung fibroblasts in comparison to non-chronic lung disease (CLD) patient fibroblasts. Out of the over 2000 proteins detected by this experimental approach, 47 proteins were differentially abundant comparing fibrotic-ILD and non-CLD fibroblast secretome. The fibrotic-ILD secretome profile was dominated by chemokines, including CXCL1, CXCL3, and CXCL8, interfering with growth factor signaling orchestrated by Interleukin 11 (IL11), steering fibrogenic cell-cell communication, and proteins regulating extracellular matrix remodeling including epithelial-to-mesenchymal transition. When in turn treating alveolar organoids with IL11, we recapitulated the co-culture results obtained with primary fibrotic-ILD fibroblasts including changes in metabolic activity. CONCLUSION: We identified mediators likely contributing to the disease-perpetuating mesenchymal-to-epithelial crosstalk in ILD. In our alveolar organoid co-cultures, we were able to highlight the importance of fibroblast-initiated aberrant epithelial differentiation and confirmed IL11 as a key player in fibrotic-ILD pathogenesis by unbiased fibroblast secretome analysis.
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spelling pubmed-102302762023-06-01 Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures Kastlmeier, Miriam T. Gonzalez-Rodriguez, Erika Cabanis, Phoebe Guenther, Eva M. König, Ann-Christine Han, Lianyong Hauck, Stefanie M. See, Fenja Asgharpour, Sara Bukas, Christina Burgstaller, Gerald Piraud, Marie Lehmann, Mareike Hatz, Rudolf A. Behr, Jürgen Stoeger, Tobias Hilgendorff, Anne Voss, Carola Front Immunol Immunology INTRODUCTION: Interstitial lung disease (ILD) is a heterogenous group of lung disorders where destruction and incomplete regeneration of the lung parenchyma often results in persistent architectural distortion of the pulmonary scaffold. Continuous mesenchyme-centered, disease-relevant signaling likely initiates and perpetuates the fibrotic remodeling process, specifically targeting the epithelial cell compartment, thereby destroying the gas exchange area. METHODS: With the aim of identifying functional mediators of the lung mesenchymal-epithelial crosstalk with potential as new targets for therapeutic strategies, we developed a 3D organoid co-culture model based on human induced pluripotent stem cell-derived alveolar epithelial type 2 cells that form alveolar organoids in presence of lung fibroblasts from fibrotic-ILD patients, in our study referring to cases of pulmonary fibrosis, as well as control cell line (IMR-90). RESULTS: While organoid formation capacity and size was comparable in the presence of fibrotic-ILD or control lung fibroblasts, metabolic activity was significantly increased in fibrotic-ILD co-cultures. Alveolar organoids cultured with fibrotic-ILD fibroblasts further demonstrated reduced stem cell function as reflected by reduced Surfactant Protein C gene expression together with an aberrant basaloid-prone differentiation program indicated by elevated Cadherin 2, Bone Morphogenic Protein 4 and Vimentin transcription. To screen for key mediators of the misguided mesenchymal-to-epithelial crosstalk with a focus on disease-relevant inflammatory processes, we used mass spectrometry and characterized the secretome of end stage fibrotic-ILD lung fibroblasts in comparison to non-chronic lung disease (CLD) patient fibroblasts. Out of the over 2000 proteins detected by this experimental approach, 47 proteins were differentially abundant comparing fibrotic-ILD and non-CLD fibroblast secretome. The fibrotic-ILD secretome profile was dominated by chemokines, including CXCL1, CXCL3, and CXCL8, interfering with growth factor signaling orchestrated by Interleukin 11 (IL11), steering fibrogenic cell-cell communication, and proteins regulating extracellular matrix remodeling including epithelial-to-mesenchymal transition. When in turn treating alveolar organoids with IL11, we recapitulated the co-culture results obtained with primary fibrotic-ILD fibroblasts including changes in metabolic activity. CONCLUSION: We identified mediators likely contributing to the disease-perpetuating mesenchymal-to-epithelial crosstalk in ILD. In our alveolar organoid co-cultures, we were able to highlight the importance of fibroblast-initiated aberrant epithelial differentiation and confirmed IL11 as a key player in fibrotic-ILD pathogenesis by unbiased fibroblast secretome analysis. Frontiers Media S.A. 2023-05-17 /pmc/articles/PMC10230276/ /pubmed/37266432 http://dx.doi.org/10.3389/fimmu.2023.1128239 Text en Copyright © 2023 Kastlmeier, Gonzalez-Rodriguez, Cabanis, Guenther, König, Han, Hauck, See, Asgharpour, Bukas, Burgstaller, Piraud, Lehmann, Hatz, Behr, Stoeger, Hilgendorff and Voss https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Kastlmeier, Miriam T.
Gonzalez-Rodriguez, Erika
Cabanis, Phoebe
Guenther, Eva M.
König, Ann-Christine
Han, Lianyong
Hauck, Stefanie M.
See, Fenja
Asgharpour, Sara
Bukas, Christina
Burgstaller, Gerald
Piraud, Marie
Lehmann, Mareike
Hatz, Rudolf A.
Behr, Jürgen
Stoeger, Tobias
Hilgendorff, Anne
Voss, Carola
Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures
title Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures
title_full Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures
title_fullStr Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures
title_full_unstemmed Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures
title_short Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures
title_sort cytokine signaling converging on il11 in ild fibroblasts provokes aberrant epithelial differentiation signatures
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10230276/
https://www.ncbi.nlm.nih.gov/pubmed/37266432
http://dx.doi.org/10.3389/fimmu.2023.1128239
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