Phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.

Macrophages are cells with many important functions in both innate and adaptive immune responses and have been shown to play a complex role in tumor progression since they harbour both tumor preventing (M1 macrophages) and tumor promoting (M2 macrophages) activities. In many human cancers, infiltrat...

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Main Authors: Sofia Edin, Maria L Wikberg, Jörgen Rutegård, Per-Arne Oldenborg, Richard Palmqvist
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3776729?pdf=render
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spelling doaj-ab438076772e498798749212917ea7982020-11-24T21:50:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0189e7498210.1371/journal.pone.0074982Phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.Sofia EdinMaria L WikbergJörgen RutegårdPer-Arne OldenborgRichard PalmqvistMacrophages are cells with many important functions in both innate and adaptive immune responses and have been shown to play a complex role in tumor progression since they harbour both tumor preventing (M1 macrophages) and tumor promoting (M2 macrophages) activities. In many human cancers, infiltrating macrophages have been associated with a poor patient prognosis, and therefore suggested to be mainly of an M2 phenotype. However, we and others have previously shown that increased macrophage density in colorectal cancer (CRC) instead is correlated with an improved prognosis. It is an intriguing question if the different roles played by macrophages in various cancers could be explained by variations in the balance between M1 and M2 macrophage attributes, driven by tumor- or organ-specific factors in the tumor microenvironment of individual cancers. Here, we utilized an in vitro cell culture system of macrophage differentiation to compare differences and similarities in the phenotype (morphology, antigen-presentation, migration, endocytosis, and expression of cytokine and chemokine genes) between M1/M2 and tumor activated macrophages (TAMs), that could explain the positive role of macrophages in CRC. We found that secreted factors from CRC cells induced TAMs of a "mixed" M1/M2 phenotype, which in turn could contribute to a "good inflammatory response". This suggests that re-education of macrophages might allow for important therapeutic advances in the treatment of human cancer.http://europepmc.org/articles/PMC3776729?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sofia Edin
Maria L Wikberg
Jörgen Rutegård
Per-Arne Oldenborg
Richard Palmqvist
spellingShingle Sofia Edin
Maria L Wikberg
Jörgen Rutegård
Per-Arne Oldenborg
Richard Palmqvist
Phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.
PLoS ONE
author_facet Sofia Edin
Maria L Wikberg
Jörgen Rutegård
Per-Arne Oldenborg
Richard Palmqvist
author_sort Sofia Edin
title Phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.
title_short Phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.
title_full Phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.
title_fullStr Phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.
title_full_unstemmed Phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.
title_sort phenotypic skewing of macrophages in vitro by secreted factors from colorectal cancer cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Macrophages are cells with many important functions in both innate and adaptive immune responses and have been shown to play a complex role in tumor progression since they harbour both tumor preventing (M1 macrophages) and tumor promoting (M2 macrophages) activities. In many human cancers, infiltrating macrophages have been associated with a poor patient prognosis, and therefore suggested to be mainly of an M2 phenotype. However, we and others have previously shown that increased macrophage density in colorectal cancer (CRC) instead is correlated with an improved prognosis. It is an intriguing question if the different roles played by macrophages in various cancers could be explained by variations in the balance between M1 and M2 macrophage attributes, driven by tumor- or organ-specific factors in the tumor microenvironment of individual cancers. Here, we utilized an in vitro cell culture system of macrophage differentiation to compare differences and similarities in the phenotype (morphology, antigen-presentation, migration, endocytosis, and expression of cytokine and chemokine genes) between M1/M2 and tumor activated macrophages (TAMs), that could explain the positive role of macrophages in CRC. We found that secreted factors from CRC cells induced TAMs of a "mixed" M1/M2 phenotype, which in turn could contribute to a "good inflammatory response". This suggests that re-education of macrophages might allow for important therapeutic advances in the treatment of human cancer.
url http://europepmc.org/articles/PMC3776729?pdf=render
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