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Reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis

Aging is a critical risk factor in idiopathic pulmonary fibrosis (IPF). Dysfunction and loss of type 2 alveolar epithelial cells (AEC2s) with failed regeneration is a seminal causal event in the pathogenesis of IPF, although the precise mechanisms for their regenerative failure and demise remain unc...

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Autores principales: Liang, Jiurong, Huang, Guanling, Liu, Xue, Liu, Ningshan, Taghavifar, Forough, Dai, Kristy, Yao, Changfu, Deng, Nan, Wang, Yizhou, Chen, Peter, Hogaboam, Cory, Stripp, Barry R, Parks, William C, Noble, Paul W, Jiang, Dianhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10292844/
https://www.ncbi.nlm.nih.gov/pubmed/37314162
http://dx.doi.org/10.7554/eLife.85415
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author Liang, Jiurong
Huang, Guanling
Liu, Xue
Liu, Ningshan
Taghavifar, Forough
Dai, Kristy
Yao, Changfu
Deng, Nan
Wang, Yizhou
Chen, Peter
Hogaboam, Cory
Stripp, Barry R
Parks, William C
Noble, Paul W
Jiang, Dianhua
author_facet Liang, Jiurong
Huang, Guanling
Liu, Xue
Liu, Ningshan
Taghavifar, Forough
Dai, Kristy
Yao, Changfu
Deng, Nan
Wang, Yizhou
Chen, Peter
Hogaboam, Cory
Stripp, Barry R
Parks, William C
Noble, Paul W
Jiang, Dianhua
author_sort Liang, Jiurong
collection PubMed
description Aging is a critical risk factor in idiopathic pulmonary fibrosis (IPF). Dysfunction and loss of type 2 alveolar epithelial cells (AEC2s) with failed regeneration is a seminal causal event in the pathogenesis of IPF, although the precise mechanisms for their regenerative failure and demise remain unclear. To systematically examine the genomic program changes of AEC2s in aging and after lung injury, we performed unbiased single-cell RNA-seq analyses of lung epithelial cells from uninjured or bleomycin-injured young and old mice, as well as from lungs of IPF patients and healthy donors. We identified three AEC2 subsets based on their gene signatures. Subset AEC2-1 mainly exist in uninjured lungs, while subsets AEC2-2 and AEC2-3 emerged in injured lungs and increased with aging. Functionally, AEC2 subsets are correlated with progenitor cell renewal. Aging enhanced the expression of the genes related to inflammation, stress responses, senescence, and apoptosis. Interestingly, lung injury increased aging-related gene expression in AEC2s even in young mice. The synergistic effects of aging and injury contributed to impaired AEC2 recovery in aged mouse lungs after injury. In addition, we also identified three subsets of AEC2s from human lungs that formed three similar subsets to mouse AEC2s. IPF AEC2s showed a similar genomic signature to AEC2 subsets from bleomycin-injured old mouse lungs. Taken together, we identified synergistic effects of aging and AEC2 injury in transcriptomic and functional analyses that promoted fibrosis. This study provides new insights into the interactions between aging and lung injury with interesting overlap with diseased IPF AEC2 cells.
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spelling pubmed-102928442023-06-27 Reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis Liang, Jiurong Huang, Guanling Liu, Xue Liu, Ningshan Taghavifar, Forough Dai, Kristy Yao, Changfu Deng, Nan Wang, Yizhou Chen, Peter Hogaboam, Cory Stripp, Barry R Parks, William C Noble, Paul W Jiang, Dianhua eLife Cell Biology Aging is a critical risk factor in idiopathic pulmonary fibrosis (IPF). Dysfunction and loss of type 2 alveolar epithelial cells (AEC2s) with failed regeneration is a seminal causal event in the pathogenesis of IPF, although the precise mechanisms for their regenerative failure and demise remain unclear. To systematically examine the genomic program changes of AEC2s in aging and after lung injury, we performed unbiased single-cell RNA-seq analyses of lung epithelial cells from uninjured or bleomycin-injured young and old mice, as well as from lungs of IPF patients and healthy donors. We identified three AEC2 subsets based on their gene signatures. Subset AEC2-1 mainly exist in uninjured lungs, while subsets AEC2-2 and AEC2-3 emerged in injured lungs and increased with aging. Functionally, AEC2 subsets are correlated with progenitor cell renewal. Aging enhanced the expression of the genes related to inflammation, stress responses, senescence, and apoptosis. Interestingly, lung injury increased aging-related gene expression in AEC2s even in young mice. The synergistic effects of aging and injury contributed to impaired AEC2 recovery in aged mouse lungs after injury. In addition, we also identified three subsets of AEC2s from human lungs that formed three similar subsets to mouse AEC2s. IPF AEC2s showed a similar genomic signature to AEC2 subsets from bleomycin-injured old mouse lungs. Taken together, we identified synergistic effects of aging and AEC2 injury in transcriptomic and functional analyses that promoted fibrosis. This study provides new insights into the interactions between aging and lung injury with interesting overlap with diseased IPF AEC2 cells. eLife Sciences Publications, Ltd 2023-06-14 /pmc/articles/PMC10292844/ /pubmed/37314162 http://dx.doi.org/10.7554/eLife.85415 Text en © 2023, Liang, Huang et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Liang, Jiurong
Huang, Guanling
Liu, Xue
Liu, Ningshan
Taghavifar, Forough
Dai, Kristy
Yao, Changfu
Deng, Nan
Wang, Yizhou
Chen, Peter
Hogaboam, Cory
Stripp, Barry R
Parks, William C
Noble, Paul W
Jiang, Dianhua
Reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis
title Reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis
title_full Reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis
title_fullStr Reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis
title_full_unstemmed Reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis
title_short Reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis
title_sort reciprocal interactions between alveolar progenitor dysfunction and aging promote lung fibrosis
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10292844/
https://www.ncbi.nlm.nih.gov/pubmed/37314162
http://dx.doi.org/10.7554/eLife.85415
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