上皮
细胞生物学
生物
呼吸上皮
基础(医学)
解剖
内分泌学
遗传学
胰岛素
作者
Jaymin J. Kathiriya,Chaoqun Wang,Minqi Zhou,Alexis Brumwell,Monica Cassandras,Claude Jourdan Le Saux,Max Cohen,Kostantinos-Dionysios Alysandratos,Bruce Wang,Paul J. Wolters,Michael A. Matthay,Darrell N. Kotton,Harold A. Chapman,Tien Peng
标识
DOI:10.1038/s41556-021-00809-4
摘要
Loss of alveolar type 2 cells (AEC2s) and the ectopic appearance of basal cells in the alveoli characterize severe lung injuries such as idiopathic pulmonary fibrosis (IPF). Here we demonstrate that human alveolar type 2 cells (hAEC2s), unlike murine AEC2s, transdifferentiate into basal cells in response to fibrotic signalling in the lung mesenchyme, in vitro and in vivo. Single-cell analysis of normal hAEC2s and mesenchymal cells in organoid co-cultures revealed the emergence of pathologic fibroblasts and basaloid cells previously described in IPF. Transforming growth factor-β1 and anti-bone morphogenic protein signalling in the organoids promoted transdifferentiation. Trajectory and histologic analyses of both hAEC2-derived organoids and IPF epithelium indicated that hAEC2s transdifferentiate into basal cells through alveolar-basal intermediates that accumulate in proximity to pathologic CTHRC1hi/TGFB1hi fibroblasts. Our study indicates that hAEC2 loss and expansion of alveolar metaplastic basal cells in severe human lung injuries are causally connected through an hAEC2-basal cell lineage trajectory driven by aberrant mesenchyme.
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