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Impaired Myofibroblast Proliferation is a Central Feature of Pathologic Post-Natal Alveolar Simplification

View ORCID ProfileImran S. Khan, Christopher Molina, Xin Ren, View ORCID ProfileVincent C. Auyeung, Max Cohen, View ORCID ProfileTatsuya Tsukui, Amha Atakilit, Dean Sheppard
doi: https://doi.org/10.1101/2023.12.21.572766
Imran S. Khan
1Division of Neonatology, Department of Pediatrics, UCSF
2Cardiovascular Research Institute, UCSF
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  • ORCID record for Imran S. Khan
Christopher Molina
2Cardiovascular Research Institute, UCSF
3Division of Pulmonary, Critical Care, Allergy, and Sleep, UCSF
4Department of Medicine, UCSF
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Xin Ren
2Cardiovascular Research Institute, UCSF
3Division of Pulmonary, Critical Care, Allergy, and Sleep, UCSF
4Department of Medicine, UCSF
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Vincent C. Auyeung
2Cardiovascular Research Institute, UCSF
3Division of Pulmonary, Critical Care, Allergy, and Sleep, UCSF
4Department of Medicine, UCSF
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Max Cohen
3Division of Pulmonary, Critical Care, Allergy, and Sleep, UCSF
4Department of Medicine, UCSF
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Tatsuya Tsukui
2Cardiovascular Research Institute, UCSF
3Division of Pulmonary, Critical Care, Allergy, and Sleep, UCSF
4Department of Medicine, UCSF
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Amha Atakilit
2Cardiovascular Research Institute, UCSF
3Division of Pulmonary, Critical Care, Allergy, and Sleep, UCSF
4Department of Medicine, UCSF
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Dean Sheppard
2Cardiovascular Research Institute, UCSF
3Division of Pulmonary, Critical Care, Allergy, and Sleep, UCSF
4Department of Medicine, UCSF
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  • For correspondence: [email protected]
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Abstract

Premature infants with bronchopulmonary dysplasia (BPD) have impaired alveolar gas exchange due to alveolar simplification and dysmorphic pulmonary vasculature. Advances in clinical care have improved survival for infants with BPD, but the overall incidence of BPD remains unchanged because we lack specific therapies to prevent this disease. Recent work has suggested a role for increased transforming growth factor-beta (TGFβ) signaling and myofibroblast populations in BPD pathogenesis, but the functional significance of each remains unclear. Here, we utilize multiple murine models of alveolar simplification and comparative single-cell RNA sequencing to identify shared mechanisms that could contribute to BPD pathogenesis. Single-cell RNA sequencing reveals a profound loss of myofibroblasts in two models of BPD and identifies gene expression signatures of increased TGFβ signaling, cell cycle arrest, and impaired proliferation in myofibroblasts. Using pharmacologic and genetic approaches, we find no evidence that increased TGFβ signaling in the lung mesenchyme contributes to alveolar simplification. In contrast, this is likely a failed compensatory response, since none of our approaches to inhibit TGFb signaling protect mice from alveolar simplification due to hyperoxia while several make simplification worse. In contrast, we find that impaired myofibroblast proliferation is a central feature in several murine models of BPD, and we show that inhibiting myofibroblast proliferation is sufficient to cause pathologic alveolar simplification. Our results underscore the importance of impaired myofibroblast proliferation as a central feature of alveolar simplification and suggest that efforts to reverse this process could have therapeutic value in BPD.

Competing Interest Statement

D.S. is a founder of Pliant Therapeutics, a member of the Genentech Scientific Review Board, a member of the Amgen Immunology Scientific Advisory Board, and a member of the Scientific Review Board for Lila Biologics. No funding or reagents from any of these companies were used for this project. None of the other authors has any conflicts of interest, financial or otherwise, to disclose.

  • Abbreviations

    α-SMA
    alpha-smooth muscle actin
    BPD
    bronchopulmonary dysplasia
    cHet
    conditional heterozygous
    cKO
    conditional knockout
    EdU
    5-ethynyl-2’-deoxyuridine
    PDGFRα
    platelet-derived growth factor receptor alpha
    P
    postnatal day
    scRNA-seq
    single-cell RNA-sequencing
    TGFβ
    transforming growth factor-beta
    TGFβR2
    transforming growth factor-beta receptor 2
    UMAP
    Uniform Manifold Approximation and Projection.
  • Copyright 
    The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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    Posted December 23, 2023.
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    Impaired Myofibroblast Proliferation is a Central Feature of Pathologic Post-Natal Alveolar Simplification
    Imran S. Khan, Christopher Molina, Xin Ren, Vincent C. Auyeung, Max Cohen, Tatsuya Tsukui, Amha Atakilit, Dean Sheppard
    bioRxiv 2023.12.21.572766; doi: https://doi.org/10.1101/2023.12.21.572766
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    Impaired Myofibroblast Proliferation is a Central Feature of Pathologic Post-Natal Alveolar Simplification
    Imran S. Khan, Christopher Molina, Xin Ren, Vincent C. Auyeung, Max Cohen, Tatsuya Tsukui, Amha Atakilit, Dean Sheppard
    bioRxiv 2023.12.21.572766; doi: https://doi.org/10.1101/2023.12.21.572766

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