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Hypercapnia alters stroma-derived Wnt production to limit β-catenin signaling and proliferation in AT2 cells

Persistent symptoms and radiographic abnormalities suggestive of failed lung repair are among the most common symptoms in patients with COVID-19 after hospital discharge. In mechanically ventilated patients with acute respiratory distress syndrome (ARDS) secondary to SARS-CoV-2 pneumonia, low tidal...

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Autores principales: Dada, Laura A., Welch, Lynn C., Magnani, Natalia D., Ren, Ziyou, Han, Hyebin, Brazee, Patricia L., Celli, Diego, Flozak, Annette S., Weng, Anthea, Herrerias, Mariana Maciel, Kryvenko, Vitalii, Vadász, István, Runyan, Constance E., Abdala-Valencia, Hiam, Shigemura, Masahiko, Casalino-Matsuda, S. Marina, Misharin, Alexander V., Budinger, G.R. Scott, Gottardi, Cara J., Sznajder, Jacob I.
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/PMC9977495/
https://www.ncbi.nlm.nih.gov/pubmed/36626234
http://dx.doi.org/10.1172/jci.insight.159331
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author Dada, Laura A.
Welch, Lynn C.
Magnani, Natalia D.
Ren, Ziyou
Han, Hyebin
Brazee, Patricia L.
Celli, Diego
Flozak, Annette S.
Weng, Anthea
Herrerias, Mariana Maciel
Kryvenko, Vitalii
Vadász, István
Runyan, Constance E.
Abdala-Valencia, Hiam
Shigemura, Masahiko
Casalino-Matsuda, S. Marina
Misharin, Alexander V.
Budinger, G.R. Scott
Gottardi, Cara J.
Sznajder, Jacob I.
author_facet Dada, Laura A.
Welch, Lynn C.
Magnani, Natalia D.
Ren, Ziyou
Han, Hyebin
Brazee, Patricia L.
Celli, Diego
Flozak, Annette S.
Weng, Anthea
Herrerias, Mariana Maciel
Kryvenko, Vitalii
Vadász, István
Runyan, Constance E.
Abdala-Valencia, Hiam
Shigemura, Masahiko
Casalino-Matsuda, S. Marina
Misharin, Alexander V.
Budinger, G.R. Scott
Gottardi, Cara J.
Sznajder, Jacob I.
author_sort Dada, Laura A.
collection PubMed
description Persistent symptoms and radiographic abnormalities suggestive of failed lung repair are among the most common symptoms in patients with COVID-19 after hospital discharge. In mechanically ventilated patients with acute respiratory distress syndrome (ARDS) secondary to SARS-CoV-2 pneumonia, low tidal volumes to reduce ventilator-induced lung injury necessarily elevate blood CO(2) levels, often leading to hypercapnia. The role of hypercapnia on lung repair after injury is not completely understood. Here — using a mouse model of hypercapnia exposure, cell lineage tracing, spatial transcriptomics, and 3D cultures — we show that hypercapnia limits β-catenin signaling in alveolar type II (AT2) cells, leading to their reduced proliferative capacity. Hypercapnia alters expression of major Wnts in PDGFRα(+) fibroblasts from those maintaining AT2 progenitor activity toward those that antagonize β-catenin signaling, thereby limiting progenitor function. Constitutive activation of β-catenin signaling in AT2 cells or treatment of organoid cultures with recombinant WNT3A protein bypasses the inhibitory effects of hypercapnia. Inhibition of AT2 proliferation in patients with hypercapnia may contribute to impaired lung repair after injury, preventing sealing of the epithelial barrier and increasing lung flooding, ventilator dependency, and mortality.
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spelling pubmed-99774952023-03-02 Hypercapnia alters stroma-derived Wnt production to limit β-catenin signaling and proliferation in AT2 cells Dada, Laura A. Welch, Lynn C. Magnani, Natalia D. Ren, Ziyou Han, Hyebin Brazee, Patricia L. Celli, Diego Flozak, Annette S. Weng, Anthea Herrerias, Mariana Maciel Kryvenko, Vitalii Vadász, István Runyan, Constance E. Abdala-Valencia, Hiam Shigemura, Masahiko Casalino-Matsuda, S. Marina Misharin, Alexander V. Budinger, G.R. Scott Gottardi, Cara J. Sznajder, Jacob I. JCI Insight Research Article Persistent symptoms and radiographic abnormalities suggestive of failed lung repair are among the most common symptoms in patients with COVID-19 after hospital discharge. In mechanically ventilated patients with acute respiratory distress syndrome (ARDS) secondary to SARS-CoV-2 pneumonia, low tidal volumes to reduce ventilator-induced lung injury necessarily elevate blood CO(2) levels, often leading to hypercapnia. The role of hypercapnia on lung repair after injury is not completely understood. Here — using a mouse model of hypercapnia exposure, cell lineage tracing, spatial transcriptomics, and 3D cultures — we show that hypercapnia limits β-catenin signaling in alveolar type II (AT2) cells, leading to their reduced proliferative capacity. Hypercapnia alters expression of major Wnts in PDGFRα(+) fibroblasts from those maintaining AT2 progenitor activity toward those that antagonize β-catenin signaling, thereby limiting progenitor function. Constitutive activation of β-catenin signaling in AT2 cells or treatment of organoid cultures with recombinant WNT3A protein bypasses the inhibitory effects of hypercapnia. Inhibition of AT2 proliferation in patients with hypercapnia may contribute to impaired lung repair after injury, preventing sealing of the epithelial barrier and increasing lung flooding, ventilator dependency, and mortality. American Society for Clinical Investigation 2023-02-22 /pmc/articles/PMC9977495/ /pubmed/36626234 http://dx.doi.org/10.1172/jci.insight.159331 Text en © 2023 Dada 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
Dada, Laura A.
Welch, Lynn C.
Magnani, Natalia D.
Ren, Ziyou
Han, Hyebin
Brazee, Patricia L.
Celli, Diego
Flozak, Annette S.
Weng, Anthea
Herrerias, Mariana Maciel
Kryvenko, Vitalii
Vadász, István
Runyan, Constance E.
Abdala-Valencia, Hiam
Shigemura, Masahiko
Casalino-Matsuda, S. Marina
Misharin, Alexander V.
Budinger, G.R. Scott
Gottardi, Cara J.
Sznajder, Jacob I.
Hypercapnia alters stroma-derived Wnt production to limit β-catenin signaling and proliferation in AT2 cells
title Hypercapnia alters stroma-derived Wnt production to limit β-catenin signaling and proliferation in AT2 cells
title_full Hypercapnia alters stroma-derived Wnt production to limit β-catenin signaling and proliferation in AT2 cells
title_fullStr Hypercapnia alters stroma-derived Wnt production to limit β-catenin signaling and proliferation in AT2 cells
title_full_unstemmed Hypercapnia alters stroma-derived Wnt production to limit β-catenin signaling and proliferation in AT2 cells
title_short Hypercapnia alters stroma-derived Wnt production to limit β-catenin signaling and proliferation in AT2 cells
title_sort hypercapnia alters stroma-derived wnt production to limit β-catenin signaling and proliferation in at2 cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9977495/
https://www.ncbi.nlm.nih.gov/pubmed/36626234
http://dx.doi.org/10.1172/jci.insight.159331
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