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Temporospatial Expression of Fgfr1 and 2 During Lung Development, Homeostasis, and Regeneration.


ABSTRACT: Fgfr1 (Fibroblast growth factor receptor 1) and Fgfr2 are dynamically expressed during lung development, homeostasis, and regeneration. Our current analysis indicates that Fgfr2 is expressed in distal epithelial progenitors AT2, AT1, club, and basal cells but not in ciliated or neuroendocrine cells during lung development and homeostasis. However, after injury, Fgfr2 becomes upregulated in neuroendocrine cells and distal club cells. Epithelial Fgfr1 expression is minimal throughout lung development, homeostasis, and regeneration. We further find both Fgfr1 and Fgfr2 strongly expressed in cartilage progenitors and airway smooth muscle cells during lung development, whereas Fgfr1 but not Fgfr2 was expressed in lipofibroblasts and vascular smooth muscle cells. In the adult lung, Fgfr1 and Fgfr2 were mostly downregulated in smooth muscle cells but became upregulated after injury. Fgfr1 remained expressed in mesenchymal alveolar niche cells or lipofibroblasts with lower levels of expression in their descendant (alveolar) myofibroblasts during alveologenesis.

SUBMITTER: Yuan T 

PROVIDER: S-EPMC7061767 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Temporospatial Expression of Fgfr1 and 2 During Lung Development, Homeostasis, and Regeneration.

Yuan Tingting T   Klinkhammer Kylie K   Lyu Handeng H   Gao Shan S   Yuan Jie J   Hopkins Seantel S   Zhang Jin-San JS   De Langhe Stijn P SP  

Frontiers in pharmacology 20200302


Fgfr1 (Fibroblast growth factor receptor 1) and Fgfr2 are dynamically expressed during lung development, homeostasis, and regeneration. Our current analysis indicates that Fgfr2 is expressed in distal epithelial progenitors AT2, AT1, club, and basal cells but not in ciliated or neuroendocrine cells during lung development and homeostasis. However, after injury, Fgfr2 becomes upregulated in neuroendocrine cells and distal club cells. Epithelial Fgfr1 expression is minimal throughout lung developm  ...[more]

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