Cargando…

Transcriptomic Analysis of Human Polarized Macrophages: More than One Role of Alternative Activation?

BACKGROUND: Macrophages are a heterogeneous cell population which in response to the cytokine milieu polarize in either classically activated macrophages (M1) or alternatively activated macrophages (M2). This plasticity makes macrophages essential in regulating inflammation, immune response and tiss...

Descripción completa

Detalles Bibliográficos
Autores principales: Derlindati, Eleonora, Dei Cas, Alessandra, Montanini, Barbara, Spigoni, Valentina, Curella, Valentina, Aldigeri, Raffaella, Ardigò, Diego, Zavaroni, Ivana, Bonadonna, Riccardo C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4370704/
https://www.ncbi.nlm.nih.gov/pubmed/25799240
http://dx.doi.org/10.1371/journal.pone.0119751
_version_ 1782362921292005376
author Derlindati, Eleonora
Dei Cas, Alessandra
Montanini, Barbara
Spigoni, Valentina
Curella, Valentina
Aldigeri, Raffaella
Ardigò, Diego
Zavaroni, Ivana
Bonadonna, Riccardo C.
author_facet Derlindati, Eleonora
Dei Cas, Alessandra
Montanini, Barbara
Spigoni, Valentina
Curella, Valentina
Aldigeri, Raffaella
Ardigò, Diego
Zavaroni, Ivana
Bonadonna, Riccardo C.
author_sort Derlindati, Eleonora
collection PubMed
description BACKGROUND: Macrophages are a heterogeneous cell population which in response to the cytokine milieu polarize in either classically activated macrophages (M1) or alternatively activated macrophages (M2). This plasticity makes macrophages essential in regulating inflammation, immune response and tissue remodeling and a novel therapeutic target in inflammatory diseases such as atherosclerosis. The aim of the study was to describe the transcriptomic profiles of differently polarized human macrophages to generate new hypotheses on the biological function of the different macrophage subtypes. METHODS AND RESULTS: Polarization of circulating monocytes/macrophages of blood donors was induced in vitro by IFN-γ and LPS (M1), by IL-4 (M2a), and by IL-10 (M2c). Unstimulated cells (RM) served as time controls. Gene expression profile of M1, M2a, M2c and RM was assessed at 6, 12 and 24h after polarization with Whole Human Genome Agilent Microarray technique. When compared to RM, M1 significantly upregulated pathways involved in immunity and inflammation, whereas M2a did the opposite. Conversely, decreased and increased expression of mitochondrial metabolism, consistent with insulin resistant and insulin sensitive patterns, was seen in M1 and M2a, respectively. The time sequence in the expression of some pathways appeared to have some specific bearing on M1 function. Finally, canonical and non-canonical Wnt genes and gene groups, promoting inflammation and tissue remodeling, were upregulated in M2a compared to RM. CONCLUSION: Our data in in vitro polarized human macrophages: 1. confirm and extend known inflammatory and anti-inflammatory gene expression patterns; 2. demonstrate changes in mitochondrial metabolism associated to insulin resistance and insulin sensitivity in M1 and M2a, respectively; 3. highlight the potential relevance of gene expression timing in M1 function; 4. unveil enhanced expression of Wnt pathways in M2a suggesting a potential dual (pro-inflammatory and anti-inflammatory) role of M2a in inflammatory diseases.
format Online
Article
Text
id pubmed-4370704
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43707042015-04-04 Transcriptomic Analysis of Human Polarized Macrophages: More than One Role of Alternative Activation? Derlindati, Eleonora Dei Cas, Alessandra Montanini, Barbara Spigoni, Valentina Curella, Valentina Aldigeri, Raffaella Ardigò, Diego Zavaroni, Ivana Bonadonna, Riccardo C. PLoS One Research Article BACKGROUND: Macrophages are a heterogeneous cell population which in response to the cytokine milieu polarize in either classically activated macrophages (M1) or alternatively activated macrophages (M2). This plasticity makes macrophages essential in regulating inflammation, immune response and tissue remodeling and a novel therapeutic target in inflammatory diseases such as atherosclerosis. The aim of the study was to describe the transcriptomic profiles of differently polarized human macrophages to generate new hypotheses on the biological function of the different macrophage subtypes. METHODS AND RESULTS: Polarization of circulating monocytes/macrophages of blood donors was induced in vitro by IFN-γ and LPS (M1), by IL-4 (M2a), and by IL-10 (M2c). Unstimulated cells (RM) served as time controls. Gene expression profile of M1, M2a, M2c and RM was assessed at 6, 12 and 24h after polarization with Whole Human Genome Agilent Microarray technique. When compared to RM, M1 significantly upregulated pathways involved in immunity and inflammation, whereas M2a did the opposite. Conversely, decreased and increased expression of mitochondrial metabolism, consistent with insulin resistant and insulin sensitive patterns, was seen in M1 and M2a, respectively. The time sequence in the expression of some pathways appeared to have some specific bearing on M1 function. Finally, canonical and non-canonical Wnt genes and gene groups, promoting inflammation and tissue remodeling, were upregulated in M2a compared to RM. CONCLUSION: Our data in in vitro polarized human macrophages: 1. confirm and extend known inflammatory and anti-inflammatory gene expression patterns; 2. demonstrate changes in mitochondrial metabolism associated to insulin resistance and insulin sensitivity in M1 and M2a, respectively; 3. highlight the potential relevance of gene expression timing in M1 function; 4. unveil enhanced expression of Wnt pathways in M2a suggesting a potential dual (pro-inflammatory and anti-inflammatory) role of M2a in inflammatory diseases. Public Library of Science 2015-03-23 /pmc/articles/PMC4370704/ /pubmed/25799240 http://dx.doi.org/10.1371/journal.pone.0119751 Text en © 2015 Derlindati 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Derlindati, Eleonora
Dei Cas, Alessandra
Montanini, Barbara
Spigoni, Valentina
Curella, Valentina
Aldigeri, Raffaella
Ardigò, Diego
Zavaroni, Ivana
Bonadonna, Riccardo C.
Transcriptomic Analysis of Human Polarized Macrophages: More than One Role of Alternative Activation?
title Transcriptomic Analysis of Human Polarized Macrophages: More than One Role of Alternative Activation?
title_full Transcriptomic Analysis of Human Polarized Macrophages: More than One Role of Alternative Activation?
title_fullStr Transcriptomic Analysis of Human Polarized Macrophages: More than One Role of Alternative Activation?
title_full_unstemmed Transcriptomic Analysis of Human Polarized Macrophages: More than One Role of Alternative Activation?
title_short Transcriptomic Analysis of Human Polarized Macrophages: More than One Role of Alternative Activation?
title_sort transcriptomic analysis of human polarized macrophages: more than one role of alternative activation?
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4370704/
https://www.ncbi.nlm.nih.gov/pubmed/25799240
http://dx.doi.org/10.1371/journal.pone.0119751
work_keys_str_mv AT derlindatieleonora transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation
AT deicasalessandra transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation
AT montaninibarbara transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation
AT spigonivalentina transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation
AT curellavalentina transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation
AT aldigeriraffaella transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation
AT ardigodiego transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation
AT zavaroniivana transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation
AT bonadonnariccardoc transcriptomicanalysisofhumanpolarizedmacrophagesmorethanoneroleofalternativeactivation