An injury-induced mesenchymal-epithelial cell niche coordinates regenerative responses in the lung.
basic_science · Level V
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- Record sourced from PubMed, PMID 39666855.
- Also identified by DOI 10.1126/science.ado5561.
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Abstract
Severe lung injury causes airway basal stem cells to migrate and outcompete alveolar stem cells, resulting in dysplastic repair. We found that this "stem cell collision" generates an injury-induced tissue niche containing keratin 5<sup>+</sup> epithelial cells and plastic Pdgfra<sup>+</sup> mesenchymal cells. Single-cell analysis revealed that the injury-induced niche is governed by mesenchymal proliferation and Notch signaling, which suppressed Wnt/Fgf signaling in the injured niche. Conversely, loss of Notch signaling rewired alveolar signaling patterns to promote functional regeneration and gas exchange. Signaling patterns in injury-induced niches can differentiate fibrotic from degenerative human lung diseases through altering the direction of Wnt/Fgf signaling. Thus, we have identified an injury-induced niche in the lung with the ability to discriminate human lung disease phenotypes.
Medical subject headings
- Lung
- Lung Injury
- Mesenchymal Stem Cells
- Receptors, Notch
- Regeneration
- Stem Cell Niche