Induction of Suppressor Cells and Increased Tumor Growth following Chronic Psychosocial Stress in Male Mice.

To study the impact of psychosocial stress on the immune system, male mice were subjected to chronic subordinate colony housing (CSC), a preclinically validated mouse model for chronic psychosocial stress. CSC substantially affected the cell composition of the bone marrow, blood, and spleen by induc...

Full description

Bibliographic Details
Main Authors: Dominic Schmidt, Daniel Peterlik, Stefan O Reber, Anja Lechner, Daniela N Männel
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4938385?pdf=render
_version_ 1819075764965867520
author Dominic Schmidt
Daniel Peterlik
Stefan O Reber
Anja Lechner
Daniela N Männel
author_facet Dominic Schmidt
Daniel Peterlik
Stefan O Reber
Anja Lechner
Daniela N Männel
author_sort Dominic Schmidt
collection DOAJ
description To study the impact of psychosocial stress on the immune system, male mice were subjected to chronic subordinate colony housing (CSC), a preclinically validated mouse model for chronic psychosocial stress. CSC substantially affected the cell composition of the bone marrow, blood, and spleen by inducing myelopoiesis and enhancing the frequency of regulatory T cells in the CD4 population. Expansion of the myeloid cell compartment was due to cells identified as immature inflammatory myeloid cells having the phenotype of myeloid-derived suppressor cells of either the granulocytic or the monocytic type. Catecholaminergic as well as TNF signaling were implicated in these CSC-induced cellular shifts. Although the frequency of regulatory cells was enhanced following CSC, the high capacity for inflammatory cytokine secretion of total splenocytes indicated an inflammatory immune status in CSC mice. Furthermore, CSC enhanced the suppressive activity of bone marrow-derived myeloid-derived suppressor cells towards proliferating T cells. In line with the occurrence of suppressor cell types such as regulatory T cells and myeloid-derived suppressor cells, transplanted syngeneic fibrosarcoma cells grew better in CSC mice than in controls, a process accompanied by pronounced angiogenesis and clustering of immature myeloid cells in the tumor tissue. In addition, tumor implantation after CSC reinforced the CSC-induced increase in myeloid-derived suppressor cells and regulatory T cell frequencies while the CSC-induced cellular changes eased off in mice without tumor. Together, our data suggest a role for suppressor cells such as regulatory T cells and myeloid-derived suppressor cells in the enhanced tumor growth after chronic psychosocial stress.
first_indexed 2024-12-21T18:30:36Z
format Article
id doaj.art-5b46e7d46cce4c7bbfdb2a01fb8601b3
institution Directory Open Access Journal
issn 1932-6203
language English
last_indexed 2024-12-21T18:30:36Z
publishDate 2016-01-01
publisher Public Library of Science (PLoS)
record_format Article
series PLoS ONE
spelling doaj.art-5b46e7d46cce4c7bbfdb2a01fb8601b32022-12-21T18:54:17ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01117e015905910.1371/journal.pone.0159059Induction of Suppressor Cells and Increased Tumor Growth following Chronic Psychosocial Stress in Male Mice.Dominic SchmidtDaniel PeterlikStefan O ReberAnja LechnerDaniela N MännelTo study the impact of psychosocial stress on the immune system, male mice were subjected to chronic subordinate colony housing (CSC), a preclinically validated mouse model for chronic psychosocial stress. CSC substantially affected the cell composition of the bone marrow, blood, and spleen by inducing myelopoiesis and enhancing the frequency of regulatory T cells in the CD4 population. Expansion of the myeloid cell compartment was due to cells identified as immature inflammatory myeloid cells having the phenotype of myeloid-derived suppressor cells of either the granulocytic or the monocytic type. Catecholaminergic as well as TNF signaling were implicated in these CSC-induced cellular shifts. Although the frequency of regulatory cells was enhanced following CSC, the high capacity for inflammatory cytokine secretion of total splenocytes indicated an inflammatory immune status in CSC mice. Furthermore, CSC enhanced the suppressive activity of bone marrow-derived myeloid-derived suppressor cells towards proliferating T cells. In line with the occurrence of suppressor cell types such as regulatory T cells and myeloid-derived suppressor cells, transplanted syngeneic fibrosarcoma cells grew better in CSC mice than in controls, a process accompanied by pronounced angiogenesis and clustering of immature myeloid cells in the tumor tissue. In addition, tumor implantation after CSC reinforced the CSC-induced increase in myeloid-derived suppressor cells and regulatory T cell frequencies while the CSC-induced cellular changes eased off in mice without tumor. Together, our data suggest a role for suppressor cells such as regulatory T cells and myeloid-derived suppressor cells in the enhanced tumor growth after chronic psychosocial stress.http://europepmc.org/articles/PMC4938385?pdf=render
spellingShingle Dominic Schmidt
Daniel Peterlik
Stefan O Reber
Anja Lechner
Daniela N Männel
Induction of Suppressor Cells and Increased Tumor Growth following Chronic Psychosocial Stress in Male Mice.
PLoS ONE
title Induction of Suppressor Cells and Increased Tumor Growth following Chronic Psychosocial Stress in Male Mice.
title_full Induction of Suppressor Cells and Increased Tumor Growth following Chronic Psychosocial Stress in Male Mice.
title_fullStr Induction of Suppressor Cells and Increased Tumor Growth following Chronic Psychosocial Stress in Male Mice.
title_full_unstemmed Induction of Suppressor Cells and Increased Tumor Growth following Chronic Psychosocial Stress in Male Mice.
title_short Induction of Suppressor Cells and Increased Tumor Growth following Chronic Psychosocial Stress in Male Mice.
title_sort induction of suppressor cells and increased tumor growth following chronic psychosocial stress in male mice
url http://europepmc.org/articles/PMC4938385?pdf=render
work_keys_str_mv AT dominicschmidt inductionofsuppressorcellsandincreasedtumorgrowthfollowingchronicpsychosocialstressinmalemice
AT danielpeterlik inductionofsuppressorcellsandincreasedtumorgrowthfollowingchronicpsychosocialstressinmalemice
AT stefanoreber inductionofsuppressorcellsandincreasedtumorgrowthfollowingchronicpsychosocialstressinmalemice
AT anjalechner inductionofsuppressorcellsandincreasedtumorgrowthfollowingchronicpsychosocialstressinmalemice
AT danielanmannel inductionofsuppressorcellsandincreasedtumorgrowthfollowingchronicpsychosocialstressinmalemice