T cells contribute to stroke-induced lymphopenia in rats.

Stroke-induced immunodepression (SIID) results when T cell and non-T immune cells, such as B cells, NK cells and monocytes, are reduced in the peripheral blood and spleen after stroke. We investigated the hypothesis that T cells are required for the reductions in non-T cell subsets observed in SIID,...

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Main Authors: Lijuan Gu, Xiaoxing Xiong, Dingtai Wei, Xuwen Gao, Sheri Krams, Heng Zhao
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3598760?pdf=render
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spelling doaj-c3bd4fb3bf3d468d8c115814c71d81572020-11-25T02:55:55ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0183e5960210.1371/journal.pone.0059602T cells contribute to stroke-induced lymphopenia in rats.Lijuan GuXiaoxing XiongDingtai WeiXuwen GaoSheri KramsHeng ZhaoStroke-induced immunodepression (SIID) results when T cell and non-T immune cells, such as B cells, NK cells and monocytes, are reduced in the peripheral blood and spleen after stroke. We investigated the hypothesis that T cells are required for the reductions in non-T cell subsets observed in SIID, and further examined a potential correlation between lymphopenia and High-mobility group protein B1 (HMGB1) release, a protein that regulates inflammation and immunodepression. Our results showed that focal ischemia resulted in similar cortical infarct sizes in both wild type (WT) Sprague Dawley (SD) rats and nude rats with a SD genetic background, which excludes the possibility of different infarct sizes affecting SIID. In addition, the numbers of CD68-positive macrophages in the ischemic brain did not differ between WT and nude rats. Numbers of total peripheral blood mononuclear cells (PBMCs) or splenocytes and lymphocyte subsets, including T cells, CD4(+) or CD8(+) T cells, B cells and monocytes in the blood and spleen, were decreased after stroke in WT rats. In nude rats, however, the total number of PBMCs and absolute numbers of NK cells, B cells and monocytes were increased in the peripheral blood after stroke; nude rats are athymic therefore they have few T cells present. Adoptive transfer of WT splenocytes into nude rats before stroke resulted in lymphopenia after stroke similar to WT rats. Moreover, in vitro T cell proliferation stimulated by Concanavalin A was significantly inhibited in WT rats as well as in nude rats receiving WT splenocyte adoptive transfer, suggesting that T cell function is indeed inhibited after stroke. Lastly, we demonstrated that stroke-induced lymphopenia is associated with a reduction in HMGB1 release in the peripheral blood. In conclusion, T cells are required for stroke-induced reductions in non-T immune cells and they are the most crucial lymphocytes for SIID.http://europepmc.org/articles/PMC3598760?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Lijuan Gu
Xiaoxing Xiong
Dingtai Wei
Xuwen Gao
Sheri Krams
Heng Zhao
spellingShingle Lijuan Gu
Xiaoxing Xiong
Dingtai Wei
Xuwen Gao
Sheri Krams
Heng Zhao
T cells contribute to stroke-induced lymphopenia in rats.
PLoS ONE
author_facet Lijuan Gu
Xiaoxing Xiong
Dingtai Wei
Xuwen Gao
Sheri Krams
Heng Zhao
author_sort Lijuan Gu
title T cells contribute to stroke-induced lymphopenia in rats.
title_short T cells contribute to stroke-induced lymphopenia in rats.
title_full T cells contribute to stroke-induced lymphopenia in rats.
title_fullStr T cells contribute to stroke-induced lymphopenia in rats.
title_full_unstemmed T cells contribute to stroke-induced lymphopenia in rats.
title_sort t cells contribute to stroke-induced lymphopenia in rats.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Stroke-induced immunodepression (SIID) results when T cell and non-T immune cells, such as B cells, NK cells and monocytes, are reduced in the peripheral blood and spleen after stroke. We investigated the hypothesis that T cells are required for the reductions in non-T cell subsets observed in SIID, and further examined a potential correlation between lymphopenia and High-mobility group protein B1 (HMGB1) release, a protein that regulates inflammation and immunodepression. Our results showed that focal ischemia resulted in similar cortical infarct sizes in both wild type (WT) Sprague Dawley (SD) rats and nude rats with a SD genetic background, which excludes the possibility of different infarct sizes affecting SIID. In addition, the numbers of CD68-positive macrophages in the ischemic brain did not differ between WT and nude rats. Numbers of total peripheral blood mononuclear cells (PBMCs) or splenocytes and lymphocyte subsets, including T cells, CD4(+) or CD8(+) T cells, B cells and monocytes in the blood and spleen, were decreased after stroke in WT rats. In nude rats, however, the total number of PBMCs and absolute numbers of NK cells, B cells and monocytes were increased in the peripheral blood after stroke; nude rats are athymic therefore they have few T cells present. Adoptive transfer of WT splenocytes into nude rats before stroke resulted in lymphopenia after stroke similar to WT rats. Moreover, in vitro T cell proliferation stimulated by Concanavalin A was significantly inhibited in WT rats as well as in nude rats receiving WT splenocyte adoptive transfer, suggesting that T cell function is indeed inhibited after stroke. Lastly, we demonstrated that stroke-induced lymphopenia is associated with a reduction in HMGB1 release in the peripheral blood. In conclusion, T cells are required for stroke-induced reductions in non-T immune cells and they are the most crucial lymphocytes for SIID.
url http://europepmc.org/articles/PMC3598760?pdf=render
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AT xiaoxingxiong tcellscontributetostrokeinducedlymphopeniainrats
AT dingtaiwei tcellscontributetostrokeinducedlymphopeniainrats
AT xuwengao tcellscontributetostrokeinducedlymphopeniainrats
AT sherikrams tcellscontributetostrokeinducedlymphopeniainrats
AT hengzhao tcellscontributetostrokeinducedlymphopeniainrats
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