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Aberrant intermediate alveolar epithelial cells promote pathogenic activation of lung fibroblasts in preclinical fibrosis models

Author

Listed:
  • Evan T. Hoffman

    (University of Pennsylvania)

  • Anit Shah

    (University of Pennsylvania)

  • Willy Roque Barboza

    (University of Pennsylvania)

  • Luis R. Rodriguez

    (University of Pennsylvania)

  • Rachna Dherwani

    (University of Pennsylvania)

  • Porter E. Dooley

    (Boston University and Boston Medical Center
    Boston University Chobanian & Avedisian School of Medicine)

  • Kasey Minakin

    (Boston University and Boston Medical Center
    Boston University Chobanian & Avedisian School of Medicine)

  • Yaniv Tomer

    (University of Pennsylvania)

  • Lauren J. Ayers

    (Boston University and Boston Medical Center
    Boston University Chobanian & Avedisian School of Medicine)

  • Dakota Jones

    (Boston University and Boston Medical Center
    Boston University Chobanian & Avedisian School of Medicine)

  • Aditi Murthy

    (University of Pennsylvania)

  • Adam Bennett

    (University of Pennsylvania)

  • Ana N. Lange

    (Boston University and Boston Medical Center)

  • Pushpinder S. Bawa

    (Boston University and Boston Medical Center)

  • Feiya Wang

    (Boston University and Boston Medical Center)

  • Apoorva Babu

    (University of Pennsylvania)

  • Katrina Chavez

    (University of Pennsylvania)

  • Reilly S. Nakamoto

    (University of Pennsylvania)

  • Charlotte H. Cooper

    (University of Pennsylvania)

  • Maria C. Basil

    (University of Pennsylvania
    University of Pennsylvania)

  • Micha Sam Brickman Raredon

    (Yale School of Medicine
    Yale School of Medicine
    Yale School of Medicine)

  • Darrell N. Kotton

    (Boston University and Boston Medical Center
    Boston University Chobanian & Avedisian School of Medicine)

  • Konstantinos-Dionysios Alysandratos

    (Boston University and Boston Medical Center
    Boston University Chobanian & Avedisian School of Medicine)

  • Jeremy Katzen

    (University of Pennsylvania
    University of Pennsylvania)

Abstract

Pulmonary fibrosis (PF) is a progressive disease histologically defined by pathological fibroblasts and epithelial cells. PF lungs contain alveolar type 2 epithelial cells (AT2s) that acquire an aberrant intermediate state phenotype. However, the direct role of these cells in PF and the signals causing them to arise and persist are not fully known. To address this, we harness the SftpcC121G mouse model, where expression of a PF-associated mutation in the AT2-specific surfactant protein C (Sftpc) gene results in AT2 dysfunction and spontaneous lung fibrosis. Here, we identify aberrant intermediate epithelial cells in SftpcC121G lungs that share transcriptional profiles with human PF aberrant basaloid cells and develop a profibrotic interactome with fibroblasts. We develop a sorting method to enrich for these cells, and through ex vivo assays, identify a profibrotic secretome mediated by TGF-β signaling. Coupling this murine model with a newly developed patient-specific induced pluripotent stem cell-derived mutant SFTPC model, we discover that human SFTPC-mutant AT2s express an aberrant basaloid program, and that loss of canonical progenitor signals coupled with TGF-β stimulation causes AT2s to enter this state. We conclude that aberrant intermediate epithelial cells drive pathogenic fibroblast activation, and that reciprocal signaling contributes to their entry into this profibrotic state.

Suggested Citation

  • Evan T. Hoffman & Anit Shah & Willy Roque Barboza & Luis R. Rodriguez & Rachna Dherwani & Porter E. Dooley & Kasey Minakin & Yaniv Tomer & Lauren J. Ayers & Dakota Jones & Aditi Murthy & Adam Bennett , 2025. "Aberrant intermediate alveolar epithelial cells promote pathogenic activation of lung fibroblasts in preclinical fibrosis models," Nature Communications, Nature, vol. 16(1), pages 1-20, December.
  • Handle: RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-63735-1
    DOI: 10.1038/s41467-025-63735-1
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