气道
间充质干细胞
细胞生物学
免疫学
医学
病理
生物
麻醉
作者
Irene Wong,Jillian Stark,VanNashlee Ya,A Vazquez,VanNashlee Ya,Aaron L. Moye,Susanna M. Dang,María F. Trovero,Emma Thompson,Syed Mukhtar Ahmed,Fatima Chaudhry,Andrea Shehaj,Maral J. Rouhani,Roderick T. Bronson,Sam M. Janes,Samuel P. Rowbotham,Jarod A. Zepp,Ruth A. Franklin,Carla F. Kim
标识
DOI:10.1101/2024.04.02.587596
摘要
Acute injury in the airways or the lung activates local progenitors and stimulates changes in cell-cell interactions to restore homeostasis, but it is not appreciated how more distant niches are impacted. We utilized mouse models of airway-specific epithelial injury to examine secondary tissue-wide alveolar, immune, and mesenchymal responses. Single-cell transcriptomics and in vivo validation revealed transient, tissue-wide proliferation of alveolar type 2 (AT2) progenitor cells after club cell-specific ablation. The AT2 cell proliferative response was reliant on alveolar macrophages (AMs) via upregulation of Spp1 which encodes the secreted factor Osteopontin. A previously uncharacterized mesenchymal population we termed Mesenchymal Airway/Adventitial Niche Cell 2 (MANC2) also exhibited dynamic changes in abundance and a pro-fibrotic transcriptional signature after club cell ablation in an AM-dependent manner. Overall, these results demonstrate that acute airway damage can trigger distal lung responses including altered cell-cell interactions that may contribute to potential vulnerabilities for further dysregulation and disease.
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