Cargando…

Mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice

Lung fibrosis is a severe condition resulting from several interstial lung diseases (ILD) with different etiologies. Current therapy of ILD, especially those associated with connective tissue diseases, is rather limited and new anti-fibrotic strategies are needed. In this study, we investigated the...

Descripción completa

Detalles Bibliográficos
Autores principales: Moroncini, Gianluca, Paolini, Chiara, Orlando, Fiorenza, Capelli, Chiara, Grieco, Antonella, Tonnini, Cecilia, Agarbati, Silvia, Mondini, Eleonora, Saccomanno, Stefania, Goteri, Gaia, Svegliati Baroni, Silvia, Provinciali, Mauro, Introna, Martino, Del Papa, Nicoletta, Gabrielli, Armando
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983506/
https://www.ncbi.nlm.nih.gov/pubmed/29856737
http://dx.doi.org/10.1371/journal.pone.0196048
_version_ 1783328435636011008
author Moroncini, Gianluca
Paolini, Chiara
Orlando, Fiorenza
Capelli, Chiara
Grieco, Antonella
Tonnini, Cecilia
Agarbati, Silvia
Mondini, Eleonora
Saccomanno, Stefania
Goteri, Gaia
Svegliati Baroni, Silvia
Provinciali, Mauro
Introna, Martino
Del Papa, Nicoletta
Gabrielli, Armando
author_facet Moroncini, Gianluca
Paolini, Chiara
Orlando, Fiorenza
Capelli, Chiara
Grieco, Antonella
Tonnini, Cecilia
Agarbati, Silvia
Mondini, Eleonora
Saccomanno, Stefania
Goteri, Gaia
Svegliati Baroni, Silvia
Provinciali, Mauro
Introna, Martino
Del Papa, Nicoletta
Gabrielli, Armando
author_sort Moroncini, Gianluca
collection PubMed
description Lung fibrosis is a severe condition resulting from several interstial lung diseases (ILD) with different etiologies. Current therapy of ILD, especially those associated with connective tissue diseases, is rather limited and new anti-fibrotic strategies are needed. In this study, we investigated the anti-fibrotic activity in vivo of human mesenchymal stromal cells obtained from whole umbilical cord (hUC-MSC). Adult immunocompetent C57BL/6 mice (n. = 8 for each experimental condition) were injected intravenously with hUC-MSC (n. = 2.5 × 10(5)) twice, 24 hours and 7 days after endotracheal injection of bleomycin. Upon sacrifice at days 8, 14, 21, collagen content, inflammatory cytokine profile, and hUC-MSC presence in explanted lung tissue were analyzed. Systemic administration of a double dose of hUC-MSC significantly reduced bleomycin-induced lung injury (inflammation and fibrosis) in mice through a selective inhibition of the IL6-IL10-TGFβ axis involving lung M2 macrophages. Only few hUC-MSC were detected from explanted lungs, suggesting a “hit and run” mechanism of action of this cellular therapy. Our data indicate that hUC-MSC possess strong in vivo anti-fibrotic activity in a mouse model resembling an immunocompetent human subject affected by inflammatory ILD, providing proof of concept for ad-hoc clinical trials.
format Online
Article
Text
id pubmed-5983506
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-59835062018-06-16 Mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice Moroncini, Gianluca Paolini, Chiara Orlando, Fiorenza Capelli, Chiara Grieco, Antonella Tonnini, Cecilia Agarbati, Silvia Mondini, Eleonora Saccomanno, Stefania Goteri, Gaia Svegliati Baroni, Silvia Provinciali, Mauro Introna, Martino Del Papa, Nicoletta Gabrielli, Armando PLoS One Research Article Lung fibrosis is a severe condition resulting from several interstial lung diseases (ILD) with different etiologies. Current therapy of ILD, especially those associated with connective tissue diseases, is rather limited and new anti-fibrotic strategies are needed. In this study, we investigated the anti-fibrotic activity in vivo of human mesenchymal stromal cells obtained from whole umbilical cord (hUC-MSC). Adult immunocompetent C57BL/6 mice (n. = 8 for each experimental condition) were injected intravenously with hUC-MSC (n. = 2.5 × 10(5)) twice, 24 hours and 7 days after endotracheal injection of bleomycin. Upon sacrifice at days 8, 14, 21, collagen content, inflammatory cytokine profile, and hUC-MSC presence in explanted lung tissue were analyzed. Systemic administration of a double dose of hUC-MSC significantly reduced bleomycin-induced lung injury (inflammation and fibrosis) in mice through a selective inhibition of the IL6-IL10-TGFβ axis involving lung M2 macrophages. Only few hUC-MSC were detected from explanted lungs, suggesting a “hit and run” mechanism of action of this cellular therapy. Our data indicate that hUC-MSC possess strong in vivo anti-fibrotic activity in a mouse model resembling an immunocompetent human subject affected by inflammatory ILD, providing proof of concept for ad-hoc clinical trials. Public Library of Science 2018-06-01 /pmc/articles/PMC5983506/ /pubmed/29856737 http://dx.doi.org/10.1371/journal.pone.0196048 Text en © 2018 Moroncini et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Moroncini, Gianluca
Paolini, Chiara
Orlando, Fiorenza
Capelli, Chiara
Grieco, Antonella
Tonnini, Cecilia
Agarbati, Silvia
Mondini, Eleonora
Saccomanno, Stefania
Goteri, Gaia
Svegliati Baroni, Silvia
Provinciali, Mauro
Introna, Martino
Del Papa, Nicoletta
Gabrielli, Armando
Mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice
title Mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice
title_full Mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice
title_fullStr Mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice
title_full_unstemmed Mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice
title_short Mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice
title_sort mesenchymal stromal cells from human umbilical cord prevent the development of lung fibrosis in immunocompetent mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983506/
https://www.ncbi.nlm.nih.gov/pubmed/29856737
http://dx.doi.org/10.1371/journal.pone.0196048
work_keys_str_mv AT moroncinigianluca mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT paolinichiara mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT orlandofiorenza mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT capellichiara mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT griecoantonella mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT tonninicecilia mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT agarbatisilvia mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT mondinieleonora mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT saccomannostefania mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT goterigaia mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT svegliatibaronisilvia mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT provincialimauro mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT intronamartino mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT delpapanicoletta mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice
AT gabrielliarmando mesenchymalstromalcellsfromhumanumbilicalcordpreventthedevelopmentoflungfibrosisinimmunocompetentmice