TY - JOUR
T1 - Dynamic expression of HOPX in alveolar epithelial cells reflects injury and repair during the progression of pulmonary fibrosis
AU - Ota, Chiharu
AU - Ng-Blichfeldt, John Poul
AU - Korfei, Martina
AU - Alsafadi, Hani N.
AU - Lehmann, Mareike
AU - Skronska-Wasek, Wioletta
AU - M. De Santis, Martina
AU - Guenther, Andreas
AU - Wagner, Darcy E.
AU - Königshoff, Melanie
N1 - Funding Information:
The authors are thankful to all the members in the Königshoff Laboratory for experimental suggestions and discussions. The authors also appreciate Nadine Adam and Rabea Imker for bleomycin experiments and histological assistance, Anastasia van den Berg and Julia Kipp for the assistance of ATII isolation, and Maria Magdalena Stein for qRT-PCR and western blotting of the human samples. The authors are grateful to the technical help of Biomedical Research Unit of Tohoku University Hospital. This study is supported by a postdoctoral research fellowship from the European Respiratory Society (LTRF-2015-4822, Ota), Grant-in-Aid for Scientific Research (C), Japan Society for the Promotion of Science (16K10056, Ota), and EC | European Research Council (ERC-2010-StG 261302, Königshoff). Human samples were provided through the European IPF Registry and Biobank (AG).
Publisher Copyright:
© 2018, The Author(s).
PY - 2018/12/1
Y1 - 2018/12/1
N2 - Mechanisms of injury and repair in alveolar epithelial cells (AECs) are critically involved in the progression of various lung diseases including idiopathic pulmonary fibrosis (IPF). Homeobox only protein x (HOPX) contributes to the formation of distal lung during development. In adult lung, alveolar epithelial type (AT) I cells express HOPX and lineage-labeled Hopx+ cells give rise to both ATI and ATII cells after pneumonectomy. However, the cell function of HOPX-expressing cells in adult fibrotic lung diseases has not been investigated. In this study, we have established a flow cytometry-based method to evaluate HOPX-expressing cells in the lung. HOPX expression in cultured ATII cells increased over culture time, which was accompanied by a decrease of proSP-C, an ATII marker. Moreover, HOPX expression was increased in AECs from bleomycin-instilled mouse lungs in vivo. Small interfering RNA-based knockdown of Hopx resulted in suppressing ATII-ATI trans-differentiation and activating cellular proliferation in vitro. In IPF lungs, HOPX expression was decreased in whole lungs and significantly correlated to a decline in lung function and progression of IPF. In conclusion, HOPX is upregulated during early alveolar injury and repair process in the lung. Decreased HOPX expression might contribute to failed regenerative processes in end-stage IPF lungs.
AB - Mechanisms of injury and repair in alveolar epithelial cells (AECs) are critically involved in the progression of various lung diseases including idiopathic pulmonary fibrosis (IPF). Homeobox only protein x (HOPX) contributes to the formation of distal lung during development. In adult lung, alveolar epithelial type (AT) I cells express HOPX and lineage-labeled Hopx+ cells give rise to both ATI and ATII cells after pneumonectomy. However, the cell function of HOPX-expressing cells in adult fibrotic lung diseases has not been investigated. In this study, we have established a flow cytometry-based method to evaluate HOPX-expressing cells in the lung. HOPX expression in cultured ATII cells increased over culture time, which was accompanied by a decrease of proSP-C, an ATII marker. Moreover, HOPX expression was increased in AECs from bleomycin-instilled mouse lungs in vivo. Small interfering RNA-based knockdown of Hopx resulted in suppressing ATII-ATI trans-differentiation and activating cellular proliferation in vitro. In IPF lungs, HOPX expression was decreased in whole lungs and significantly correlated to a decline in lung function and progression of IPF. In conclusion, HOPX is upregulated during early alveolar injury and repair process in the lung. Decreased HOPX expression might contribute to failed regenerative processes in end-stage IPF lungs.
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U2 - 10.1038/s41598-018-31214-x
DO - 10.1038/s41598-018-31214-x
M3 - Article
C2 - 30154568
AN - SCOPUS:85052401221
SN - 2045-2322
VL - 8
JO - Scientific Reports
JF - Scientific Reports
IS - 1
M1 - 12983
ER -