Cargando…

Monocytic Ontogeny of Regenerated Macrophages Characterizes the Mesotheliomagenic Responses to Carbon Nanotubes

Macrophages are not only derived from circulating blood monocytes or embryonic precursors but also expand by proliferation. The origin determines macrophage fate and functions in steady state and pathological conditions. Macrophages predominantly infiltrate fibre-induced mesothelioma tumors and cont...

Descripción completa

Detalles Bibliográficos
Autores principales: Orsi, Micaela, Palmai-Pallag, Mihaly, Yakoub, Yousof, Ibouraadaten, Saloua, De Beukelaer, Michèle, Bouzin, Caroline, Bearzatto, Bertrand, Ambroise, Jérôme, Gala, Jean-Luc, Brusa, Davide, Lison, Dominique, Huaux, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8236701/
https://www.ncbi.nlm.nih.gov/pubmed/34194430
http://dx.doi.org/10.3389/fimmu.2021.666107
_version_ 1783714594515058688
author Orsi, Micaela
Palmai-Pallag, Mihaly
Yakoub, Yousof
Ibouraadaten, Saloua
De Beukelaer, Michèle
Bouzin, Caroline
Bearzatto, Bertrand
Ambroise, Jérôme
Gala, Jean-Luc
Brusa, Davide
Lison, Dominique
Huaux, François
author_facet Orsi, Micaela
Palmai-Pallag, Mihaly
Yakoub, Yousof
Ibouraadaten, Saloua
De Beukelaer, Michèle
Bouzin, Caroline
Bearzatto, Bertrand
Ambroise, Jérôme
Gala, Jean-Luc
Brusa, Davide
Lison, Dominique
Huaux, François
author_sort Orsi, Micaela
collection PubMed
description Macrophages are not only derived from circulating blood monocytes or embryonic precursors but also expand by proliferation. The origin determines macrophage fate and functions in steady state and pathological conditions. Macrophages predominantly infiltrate fibre-induced mesothelioma tumors and contribute to cancer development. Here, we revealed their ontogeny by comparing the response to needle-like mesotheliomagenic carbon nanotubes (CNT-7) with tangled-like non-mesotheliomagenic CNT-T. In a rat peritoneal cavity model of mesothelioma, both CNT induced a rapid macrophage disappearance reaction (MDR) of MHCII(low) resident macrophages generating an empty niche available for macrophage repopulation. Macrophage depletion after mesotheliomagenic CNT-7 was followed by a substantial inflammatory reaction, and macrophage replenishment completed after 7 days. Thirty days after non-mesotheliomagenic CNT-T, macrophage repopulation was still incomplete and accompanied by a limited inflammatory reaction. Cell depletion experiments, flow cytometry and RNA-seq analysis demonstrated that, after mesotheliomagenic CNT-7 exposure, resident macrophages were mainly replaced by an influx of monocytes, which differentiated locally into MHCII(high) inflammatory macrophages. In contrast, the low inflammatory response induced by CNT-T was associated by the accumulation of self-renewing MHCII(low) macrophages that initially derive from monocytes. In conclusion, the mesotheliomagenic response to CNT specifically relies on macrophage niche recolonization by monocyte-derived inflammatory macrophages. In contrast, the apparent homeostasis after non-mesotheliomagenic CNT treatment involves a macrophage regeneration by proliferation. Macrophage depletion and repopulation are thus decisive events characterizing the carcinogenic activity of particles and fibres.
format Online
Article
Text
id pubmed-8236701
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-82367012021-06-29 Monocytic Ontogeny of Regenerated Macrophages Characterizes the Mesotheliomagenic Responses to Carbon Nanotubes Orsi, Micaela Palmai-Pallag, Mihaly Yakoub, Yousof Ibouraadaten, Saloua De Beukelaer, Michèle Bouzin, Caroline Bearzatto, Bertrand Ambroise, Jérôme Gala, Jean-Luc Brusa, Davide Lison, Dominique Huaux, François Front Immunol Immunology Macrophages are not only derived from circulating blood monocytes or embryonic precursors but also expand by proliferation. The origin determines macrophage fate and functions in steady state and pathological conditions. Macrophages predominantly infiltrate fibre-induced mesothelioma tumors and contribute to cancer development. Here, we revealed their ontogeny by comparing the response to needle-like mesotheliomagenic carbon nanotubes (CNT-7) with tangled-like non-mesotheliomagenic CNT-T. In a rat peritoneal cavity model of mesothelioma, both CNT induced a rapid macrophage disappearance reaction (MDR) of MHCII(low) resident macrophages generating an empty niche available for macrophage repopulation. Macrophage depletion after mesotheliomagenic CNT-7 was followed by a substantial inflammatory reaction, and macrophage replenishment completed after 7 days. Thirty days after non-mesotheliomagenic CNT-T, macrophage repopulation was still incomplete and accompanied by a limited inflammatory reaction. Cell depletion experiments, flow cytometry and RNA-seq analysis demonstrated that, after mesotheliomagenic CNT-7 exposure, resident macrophages were mainly replaced by an influx of monocytes, which differentiated locally into MHCII(high) inflammatory macrophages. In contrast, the low inflammatory response induced by CNT-T was associated by the accumulation of self-renewing MHCII(low) macrophages that initially derive from monocytes. In conclusion, the mesotheliomagenic response to CNT specifically relies on macrophage niche recolonization by monocyte-derived inflammatory macrophages. In contrast, the apparent homeostasis after non-mesotheliomagenic CNT treatment involves a macrophage regeneration by proliferation. Macrophage depletion and repopulation are thus decisive events characterizing the carcinogenic activity of particles and fibres. Frontiers Media S.A. 2021-06-14 /pmc/articles/PMC8236701/ /pubmed/34194430 http://dx.doi.org/10.3389/fimmu.2021.666107 Text en Copyright © 2021 Orsi, Palmai-Pallag, Yakoub, Ibouraadaten, De Beukelaer, Bouzin, Bearzatto, Ambroise, Gala, Brusa, Lison and Huaux https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Orsi, Micaela
Palmai-Pallag, Mihaly
Yakoub, Yousof
Ibouraadaten, Saloua
De Beukelaer, Michèle
Bouzin, Caroline
Bearzatto, Bertrand
Ambroise, Jérôme
Gala, Jean-Luc
Brusa, Davide
Lison, Dominique
Huaux, François
Monocytic Ontogeny of Regenerated Macrophages Characterizes the Mesotheliomagenic Responses to Carbon Nanotubes
title Monocytic Ontogeny of Regenerated Macrophages Characterizes the Mesotheliomagenic Responses to Carbon Nanotubes
title_full Monocytic Ontogeny of Regenerated Macrophages Characterizes the Mesotheliomagenic Responses to Carbon Nanotubes
title_fullStr Monocytic Ontogeny of Regenerated Macrophages Characterizes the Mesotheliomagenic Responses to Carbon Nanotubes
title_full_unstemmed Monocytic Ontogeny of Regenerated Macrophages Characterizes the Mesotheliomagenic Responses to Carbon Nanotubes
title_short Monocytic Ontogeny of Regenerated Macrophages Characterizes the Mesotheliomagenic Responses to Carbon Nanotubes
title_sort monocytic ontogeny of regenerated macrophages characterizes the mesotheliomagenic responses to carbon nanotubes
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8236701/
https://www.ncbi.nlm.nih.gov/pubmed/34194430
http://dx.doi.org/10.3389/fimmu.2021.666107
work_keys_str_mv AT orsimicaela monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT palmaipallagmihaly monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT yakoubyousof monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT ibouraadatensaloua monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT debeukelaermichele monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT bouzincaroline monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT bearzattobertrand monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT ambroisejerome monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT galajeanluc monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT brusadavide monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT lisondominique monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes
AT huauxfrancois monocyticontogenyofregeneratedmacrophagescharacterizesthemesotheliomagenicresponsestocarbonnanotubes