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Dynamics of T Lymphocyte between the Periphery and the Brain from the Acute to the Chronic Phase Following Ischemic Stroke in MiceDynamics of T Lymphocyte between the Periphery and the Brain from the Acute to the Chronic Phase Following Ischemic Stroke in Mice

Other Titles
Dynamics of T Lymphocyte between the Periphery and the Brain from the Acute to the Chronic Phase Following Ischemic Stroke in Mice
Authors
Kim, MinhaKim, So-DamKim, Kyoung InJeon, Eun HaeKim, Min GeeLim, Yu-ReeLkhagva-Yondon, EnkhmaaOh, YenaNa, KwangminChung, Young CheulJin, Byung KwanSong, Yun SeonJeon, Myung-Shin
Issue Date
Apr-2021
Publisher
한국뇌신경과학회
Keywords
Ischemic stroke; T lymphocytes; Thymocyte; IL-10; Foxp3; Regulatory T cells
Citation
Experimental Neurobiology, v.30, no.2, pp 155 - 169
Pages
15
Journal Title
Experimental Neurobiology
Volume
30
Number
2
Start Page
155
End Page
169
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/146694
DOI
10.5607/en20062
ISSN
1226-2560
2093-8144
Abstract
Stroke causes systemic immunosuppression. T lymphocytes are involved in infarct size in the early stages of stroke. However, the phenotypes of T lymphocytes and their functions in peripheral immune organs and the brain have not been well analyzed in the acute and chronic phases of stroke. Here, we investigated pathological phenotypic alterations in the systemic immune response, especially changes in T lymphocytes, from one day to six months after ischemic stroke in mice. Impairment in thymocyte numbers, development, proliferation, and apoptosis were observed for up to two weeks. The number of mature T cells in the spleen and blood decreased and showed reduced interferon-γ production. Increased numbers of CD4- CD8- CD3+ double-negative T cells were observed in the mouse brain during the early stages of stroke, whereas interleukin (IL)-10+ Foxp3+ regulatory T lymphocytes increased from two weeks during the chronic phase. These phenotypes correlated with body weight and neurological severity scores. The recovery of T lymphocyte numbers and increases in IL-10+ Foxp3+ regulatory T lymphocytes may be important for long-term neurological outcomes. Dynamic changes in T lymphocytes between the acute and chronic phases may play different roles in pathogenesis and recovery. This study provides fundamental information regarding the T lymphocyte alterations from the brain to the peripheral immune organs following stroke.
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