Cargando…

High aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in miRNA levels

INTRODUCTION: Inhalation of nanomaterials may induce inflammation in the lung which if left unresolved can manifest in pulmonary fibrosis. In these processes, alveolar macrophages have an essential role and timely modulation of the macrophage phenotype is imperative in the onset and resolution of in...

Descripción completa

Detalles Bibliográficos
Autores principales: Erdem, Johanna Samulin, Závodná, Táňa, Ervik, Torunn K., Skare, Øivind, Hron, Tomáš, Anmarkrud, Kristine H., Kuśnierczyk, Anna, Catalán, Julia, Ellingsen, Dag G., Topinka, Jan, Zienolddiny-Narui, Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9911541/
https://www.ncbi.nlm.nih.gov/pubmed/36776851
http://dx.doi.org/10.3389/fimmu.2023.1111123
_version_ 1784885011521994752
author Erdem, Johanna Samulin
Závodná, Táňa
Ervik, Torunn K.
Skare, Øivind
Hron, Tomáš
Anmarkrud, Kristine H.
Kuśnierczyk, Anna
Catalán, Julia
Ellingsen, Dag G.
Topinka, Jan
Zienolddiny-Narui, Shan
author_facet Erdem, Johanna Samulin
Závodná, Táňa
Ervik, Torunn K.
Skare, Øivind
Hron, Tomáš
Anmarkrud, Kristine H.
Kuśnierczyk, Anna
Catalán, Julia
Ellingsen, Dag G.
Topinka, Jan
Zienolddiny-Narui, Shan
author_sort Erdem, Johanna Samulin
collection PubMed
description INTRODUCTION: Inhalation of nanomaterials may induce inflammation in the lung which if left unresolved can manifest in pulmonary fibrosis. In these processes, alveolar macrophages have an essential role and timely modulation of the macrophage phenotype is imperative in the onset and resolution of inflammatory responses. This study aimed to investigate, the immunomodulating properties of two industrially relevant high aspect ratio nanomaterials, namely nanocellulose and multiwalled carbon nanotubes (MWCNT), in an alveolar macrophage model. METHODS: MH-S alveolar macrophages were exposed at air-liquid interface to cellulose nanocrystals (CNC), cellulose nanofibers (CNF) and two MWCNT (NM-400 and NM-401). Following exposure, changes in macrophage polarization markers and secretion of inflammatory cytokines were analyzed. Furthermore, the potential contribution of epigenetic regulation in nanomaterial-induced macrophage polarization was investigated by assessing changes in epigenetic regulatory enzymes, miRNAs, and rRNA modifications. RESULTS: Our data illustrate that the investigated nanomaterials trigger phenotypic changes in alveolar macrophages, where CNF exposure leads to enhanced M1 phenotype and MWCNT promotes M2 phenotype. Furthermore, MWCNT exposure induced more prominent epigenetic regulatory events with changes in the expression of histone modification and DNA methylation enzymes as well as in miRNA transcript levels. MWCNT-enhanced changes in the macrophage phenotype were correlated with prominent downregulation of the histone methyltransferases Kmt2a and Smyd5 and histone deacetylases Hdac4, Hdac9 and Sirt1 indicating that both histone methylation and acetylation events may be critical in the Th2 responses to MWCNT. Furthermore, MWCNT as well as CNF exposure led to altered miRNA levels, where miR-155-5p, miR-16-1-3p, miR-25-3p, and miR-27a-5p were significantly regulated by both materials. PANTHER pathway analysis of the identified miRNA targets showed that both materials affected growth factor (PDGF, EGF and FGF), Ras/MAPKs, CCKR, GnRH-R, integrin, and endothelin signaling pathways. These pathways are important in inflammation or in the activation, polarization, migration, and regulation of phagocytic capacity of macrophages. In addition, pathways involved in interleukin, WNT and TGFB signaling were highly enriched following MWCNT exposure. CONCLUSION: Together, these data support the importance of macrophage phenotypic changes in the onset and resolution of inflammation and identify epigenetic patterns in macrophages which may be critical in nanomaterial-induced inflammation and fibrosis.
format Online
Article
Text
id pubmed-9911541
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-99115412023-02-11 High aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in miRNA levels Erdem, Johanna Samulin Závodná, Táňa Ervik, Torunn K. Skare, Øivind Hron, Tomáš Anmarkrud, Kristine H. Kuśnierczyk, Anna Catalán, Julia Ellingsen, Dag G. Topinka, Jan Zienolddiny-Narui, Shan Front Immunol Immunology INTRODUCTION: Inhalation of nanomaterials may induce inflammation in the lung which if left unresolved can manifest in pulmonary fibrosis. In these processes, alveolar macrophages have an essential role and timely modulation of the macrophage phenotype is imperative in the onset and resolution of inflammatory responses. This study aimed to investigate, the immunomodulating properties of two industrially relevant high aspect ratio nanomaterials, namely nanocellulose and multiwalled carbon nanotubes (MWCNT), in an alveolar macrophage model. METHODS: MH-S alveolar macrophages were exposed at air-liquid interface to cellulose nanocrystals (CNC), cellulose nanofibers (CNF) and two MWCNT (NM-400 and NM-401). Following exposure, changes in macrophage polarization markers and secretion of inflammatory cytokines were analyzed. Furthermore, the potential contribution of epigenetic regulation in nanomaterial-induced macrophage polarization was investigated by assessing changes in epigenetic regulatory enzymes, miRNAs, and rRNA modifications. RESULTS: Our data illustrate that the investigated nanomaterials trigger phenotypic changes in alveolar macrophages, where CNF exposure leads to enhanced M1 phenotype and MWCNT promotes M2 phenotype. Furthermore, MWCNT exposure induced more prominent epigenetic regulatory events with changes in the expression of histone modification and DNA methylation enzymes as well as in miRNA transcript levels. MWCNT-enhanced changes in the macrophage phenotype were correlated with prominent downregulation of the histone methyltransferases Kmt2a and Smyd5 and histone deacetylases Hdac4, Hdac9 and Sirt1 indicating that both histone methylation and acetylation events may be critical in the Th2 responses to MWCNT. Furthermore, MWCNT as well as CNF exposure led to altered miRNA levels, where miR-155-5p, miR-16-1-3p, miR-25-3p, and miR-27a-5p were significantly regulated by both materials. PANTHER pathway analysis of the identified miRNA targets showed that both materials affected growth factor (PDGF, EGF and FGF), Ras/MAPKs, CCKR, GnRH-R, integrin, and endothelin signaling pathways. These pathways are important in inflammation or in the activation, polarization, migration, and regulation of phagocytic capacity of macrophages. In addition, pathways involved in interleukin, WNT and TGFB signaling were highly enriched following MWCNT exposure. CONCLUSION: Together, these data support the importance of macrophage phenotypic changes in the onset and resolution of inflammation and identify epigenetic patterns in macrophages which may be critical in nanomaterial-induced inflammation and fibrosis. Frontiers Media S.A. 2023-01-27 /pmc/articles/PMC9911541/ /pubmed/36776851 http://dx.doi.org/10.3389/fimmu.2023.1111123 Text en Copyright © 2023 Erdem, Závodná, Ervik, Skare, Hron, Anmarkrud, Kuśnierczyk, Catalán, Ellingsen, Topinka and Zienolddiny-Narui 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
Erdem, Johanna Samulin
Závodná, Táňa
Ervik, Torunn K.
Skare, Øivind
Hron, Tomáš
Anmarkrud, Kristine H.
Kuśnierczyk, Anna
Catalán, Julia
Ellingsen, Dag G.
Topinka, Jan
Zienolddiny-Narui, Shan
High aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in miRNA levels
title High aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in miRNA levels
title_full High aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in miRNA levels
title_fullStr High aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in miRNA levels
title_full_unstemmed High aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in miRNA levels
title_short High aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in miRNA levels
title_sort high aspect ratio nanomaterial-induced macrophage polarization is mediated by changes in mirna levels
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9911541/
https://www.ncbi.nlm.nih.gov/pubmed/36776851
http://dx.doi.org/10.3389/fimmu.2023.1111123
work_keys_str_mv AT erdemjohannasamulin highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT zavodnatana highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT erviktorunnk highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT skareøivind highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT hrontomas highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT anmarkrudkristineh highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT kusnierczykanna highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT catalanjulia highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT ellingsendagg highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT topinkajan highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels
AT zienolddinynaruishan highaspectrationanomaterialinducedmacrophagepolarizationismediatedbychangesinmirnalevels