Inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosis

Idiopathic pulmonary fibrosis (IPF) is a fatal lung disease and adult lung spheroid cells have been shown to promote regeneration in animal models of IPF. Here the authors show that the secretome and exosomes of lung spheroid cells is effective as inhalation treatment in rodent models of lung injury...

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Main Authors: Phuong-Uyen C. Dinh, Dipti Paudel, Hayden Brochu, Kristen D. Popowski, M. Cyndell Gracieux, Jhon Cores, Ke Huang, M. Taylor Hensley, Erin Harrell, Adam C. Vandergriff, Arianna K. George, Raina T. Barrio, Shiqi Hu, Tyler A. Allen, Kevin Blackburn, Thomas G. Caranasos, Xinxia Peng, Lauren V. Schnabel, Kenneth B. Adler, Leonard J. Lobo, Michael B. Goshe, Ke Cheng
Format: Article
Language:English
Published: Nature Portfolio 2020-02-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-020-14344-7
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author Phuong-Uyen C. Dinh
Dipti Paudel
Hayden Brochu
Kristen D. Popowski
M. Cyndell Gracieux
Jhon Cores
Ke Huang
M. Taylor Hensley
Erin Harrell
Adam C. Vandergriff
Arianna K. George
Raina T. Barrio
Shiqi Hu
Tyler A. Allen
Kevin Blackburn
Thomas G. Caranasos
Xinxia Peng
Lauren V. Schnabel
Kenneth B. Adler
Leonard J. Lobo
Michael B. Goshe
Ke Cheng
author_facet Phuong-Uyen C. Dinh
Dipti Paudel
Hayden Brochu
Kristen D. Popowski
M. Cyndell Gracieux
Jhon Cores
Ke Huang
M. Taylor Hensley
Erin Harrell
Adam C. Vandergriff
Arianna K. George
Raina T. Barrio
Shiqi Hu
Tyler A. Allen
Kevin Blackburn
Thomas G. Caranasos
Xinxia Peng
Lauren V. Schnabel
Kenneth B. Adler
Leonard J. Lobo
Michael B. Goshe
Ke Cheng
author_sort Phuong-Uyen C. Dinh
collection DOAJ
description Idiopathic pulmonary fibrosis (IPF) is a fatal lung disease and adult lung spheroid cells have been shown to promote regeneration in animal models of IPF. Here the authors show that the secretome and exosomes of lung spheroid cells is effective as inhalation treatment in rodent models of lung injury and fibrosis and superior to the counterparts derived from mesenchymal stem cells.
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spelling doaj.art-4496cdf678834d70ba8a9b30f7098a552022-12-21T19:09:31ZengNature PortfolioNature Communications2041-17232020-02-0111111410.1038/s41467-020-14344-7Inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosisPhuong-Uyen C. Dinh0Dipti Paudel1Hayden Brochu2Kristen D. Popowski3M. Cyndell Gracieux4Jhon Cores5Ke Huang6M. Taylor Hensley7Erin Harrell8Adam C. Vandergriff9Arianna K. George10Raina T. Barrio11Shiqi Hu12Tyler A. Allen13Kevin Blackburn14Thomas G. Caranasos15Xinxia Peng16Lauren V. Schnabel17Kenneth B. Adler18Leonard J. Lobo19Michael B. Goshe20Ke Cheng21Department of Molecular Biomedical Sciences, North Carolina State UniversityDepartment of Molecular and Structural Biochemistry, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityDepartment of Molecular and Structural Biochemistry, North Carolina State UniversityComparative Medicine Institute, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityJoint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State UniversityDepartment of Molecular and Structural Biochemistry, North Carolina State UniversityDepartment of Biological Sciences, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityDepartment of Molecular and Structural Biochemistry, North Carolina State UniversityDivision of Cardiothoracic Surgery, University of North Carolina at Chapel HillDepartment of Molecular Biomedical Sciences, North Carolina State UniversityComparative Medicine Institute, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityDivision of Pulmonary Diseases and Critical Care Medicine, University of North Carolina at Chapel HillDepartment of Molecular and Structural Biochemistry, North Carolina State UniversityDepartment of Molecular Biomedical Sciences, North Carolina State UniversityIdiopathic pulmonary fibrosis (IPF) is a fatal lung disease and adult lung spheroid cells have been shown to promote regeneration in animal models of IPF. Here the authors show that the secretome and exosomes of lung spheroid cells is effective as inhalation treatment in rodent models of lung injury and fibrosis and superior to the counterparts derived from mesenchymal stem cells.https://doi.org/10.1038/s41467-020-14344-7
spellingShingle Phuong-Uyen C. Dinh
Dipti Paudel
Hayden Brochu
Kristen D. Popowski
M. Cyndell Gracieux
Jhon Cores
Ke Huang
M. Taylor Hensley
Erin Harrell
Adam C. Vandergriff
Arianna K. George
Raina T. Barrio
Shiqi Hu
Tyler A. Allen
Kevin Blackburn
Thomas G. Caranasos
Xinxia Peng
Lauren V. Schnabel
Kenneth B. Adler
Leonard J. Lobo
Michael B. Goshe
Ke Cheng
Inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosis
Nature Communications
title Inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosis
title_full Inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosis
title_fullStr Inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosis
title_full_unstemmed Inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosis
title_short Inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosis
title_sort inhalation of lung spheroid cell secretome and exosomes promotes lung repair in pulmonary fibrosis
url https://doi.org/10.1038/s41467-020-14344-7
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