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Oxidative stress induces club cell proliferation and pulmonary fibrosis in Atp8b1 mutant mice

Atp8b1 (ATPase, aminophospholipid transporter, class I, type 8B, member 1) is a cardiolipin transporter in the apical membrane of lung epithelial cells. While the role of Atp8b1 in pneumonia-induced acute lung injury (ALI) has been well studied, its potential role in oxidative stress-induced ALI is...

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Autores principales: Fukumoto, Jutaro, Leung, Joseph, Cox, Ruan, Czachor, Alexander, Parthasarathy, Prasanna Tamarapu, Lagishetty, Venu, Mandry, Maria, Hosseinian, Nima, Patel, Priyanshi, Perry, Brittany, Breitzig, Mason T., Alleyn, Matthew, Failla, Athena, Cho, Young, Cooke, Andrew J., Galam, Lakshmi, Soundararajan, Ramani, Sharma, Nirmal, Lockey, Richard F., Kolliputi, Narasaiah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6339797/
https://www.ncbi.nlm.nih.gov/pubmed/30636723
http://dx.doi.org/10.18632/aging.101742
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author Fukumoto, Jutaro
Leung, Joseph
Cox, Ruan
Czachor, Alexander
Parthasarathy, Prasanna Tamarapu
Lagishetty, Venu
Mandry, Maria
Hosseinian, Nima
Patel, Priyanshi
Perry, Brittany
Breitzig, Mason T.
Alleyn, Matthew
Failla, Athena
Cho, Young
Cooke, Andrew J.
Galam, Lakshmi
Soundararajan, Ramani
Sharma, Nirmal
Lockey, Richard F.
Kolliputi, Narasaiah
author_facet Fukumoto, Jutaro
Leung, Joseph
Cox, Ruan
Czachor, Alexander
Parthasarathy, Prasanna Tamarapu
Lagishetty, Venu
Mandry, Maria
Hosseinian, Nima
Patel, Priyanshi
Perry, Brittany
Breitzig, Mason T.
Alleyn, Matthew
Failla, Athena
Cho, Young
Cooke, Andrew J.
Galam, Lakshmi
Soundararajan, Ramani
Sharma, Nirmal
Lockey, Richard F.
Kolliputi, Narasaiah
author_sort Fukumoto, Jutaro
collection PubMed
description Atp8b1 (ATPase, aminophospholipid transporter, class I, type 8B, member 1) is a cardiolipin transporter in the apical membrane of lung epithelial cells. While the role of Atp8b1 in pneumonia-induced acute lung injury (ALI) has been well studied, its potential role in oxidative stress-induced ALI is poorly understood. We herein show that Atp8b1(G308V/G308V) mice under hyperoxic conditions display exacerbated cell apoptosis at alveolar epithelium and aberrant proliferation of club cells at bronchiolar epithelium. This hyperoxia-induced ambivalent response in Atp8b1(G308V/G308V) lungs was followed by patchy distribution of non-uniform interstitial fibrosis at late recovery phase under normoxia. Since this club cell abnormality is commonly observed between Atp8b1(G308V/G308V) lungs under hyperoxic conditions and IPF lungs, we characterized this mouse fibrosis model focusing on club cells. Intriguingly, subcellular morphological analysis of IPF lungs, using transmission electron microscopy (TEM), revealed that metaplastic bronchiolar epithelial cells in fibrotic lesions and deformed type II alveolar epithelial cells (AECs) in alveoli with mild fibrosis, have common morphological features including cytoplasmic vacuolation and dysmorphic lamellar bodies. In conclusion, the combination of Atp8b1 mutation and hyperoxic insult serves as a novel platform to study unfocused role of club cells in IPF.
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spelling pubmed-63397972019-01-28 Oxidative stress induces club cell proliferation and pulmonary fibrosis in Atp8b1 mutant mice Fukumoto, Jutaro Leung, Joseph Cox, Ruan Czachor, Alexander Parthasarathy, Prasanna Tamarapu Lagishetty, Venu Mandry, Maria Hosseinian, Nima Patel, Priyanshi Perry, Brittany Breitzig, Mason T. Alleyn, Matthew Failla, Athena Cho, Young Cooke, Andrew J. Galam, Lakshmi Soundararajan, Ramani Sharma, Nirmal Lockey, Richard F. Kolliputi, Narasaiah Aging (Albany NY) Research Paper Atp8b1 (ATPase, aminophospholipid transporter, class I, type 8B, member 1) is a cardiolipin transporter in the apical membrane of lung epithelial cells. While the role of Atp8b1 in pneumonia-induced acute lung injury (ALI) has been well studied, its potential role in oxidative stress-induced ALI is poorly understood. We herein show that Atp8b1(G308V/G308V) mice under hyperoxic conditions display exacerbated cell apoptosis at alveolar epithelium and aberrant proliferation of club cells at bronchiolar epithelium. This hyperoxia-induced ambivalent response in Atp8b1(G308V/G308V) lungs was followed by patchy distribution of non-uniform interstitial fibrosis at late recovery phase under normoxia. Since this club cell abnormality is commonly observed between Atp8b1(G308V/G308V) lungs under hyperoxic conditions and IPF lungs, we characterized this mouse fibrosis model focusing on club cells. Intriguingly, subcellular morphological analysis of IPF lungs, using transmission electron microscopy (TEM), revealed that metaplastic bronchiolar epithelial cells in fibrotic lesions and deformed type II alveolar epithelial cells (AECs) in alveoli with mild fibrosis, have common morphological features including cytoplasmic vacuolation and dysmorphic lamellar bodies. In conclusion, the combination of Atp8b1 mutation and hyperoxic insult serves as a novel platform to study unfocused role of club cells in IPF. Impact Journals 2019-01-13 /pmc/articles/PMC6339797/ /pubmed/30636723 http://dx.doi.org/10.18632/aging.101742 Text en Copyright © 2019 Fukumoto et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC BY) 3.0 License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Fukumoto, Jutaro
Leung, Joseph
Cox, Ruan
Czachor, Alexander
Parthasarathy, Prasanna Tamarapu
Lagishetty, Venu
Mandry, Maria
Hosseinian, Nima
Patel, Priyanshi
Perry, Brittany
Breitzig, Mason T.
Alleyn, Matthew
Failla, Athena
Cho, Young
Cooke, Andrew J.
Galam, Lakshmi
Soundararajan, Ramani
Sharma, Nirmal
Lockey, Richard F.
Kolliputi, Narasaiah
Oxidative stress induces club cell proliferation and pulmonary fibrosis in Atp8b1 mutant mice
title Oxidative stress induces club cell proliferation and pulmonary fibrosis in Atp8b1 mutant mice
title_full Oxidative stress induces club cell proliferation and pulmonary fibrosis in Atp8b1 mutant mice
title_fullStr Oxidative stress induces club cell proliferation and pulmonary fibrosis in Atp8b1 mutant mice
title_full_unstemmed Oxidative stress induces club cell proliferation and pulmonary fibrosis in Atp8b1 mutant mice
title_short Oxidative stress induces club cell proliferation and pulmonary fibrosis in Atp8b1 mutant mice
title_sort oxidative stress induces club cell proliferation and pulmonary fibrosis in atp8b1 mutant mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6339797/
https://www.ncbi.nlm.nih.gov/pubmed/30636723
http://dx.doi.org/10.18632/aging.101742
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