细胞激素风暴
细胞因子
生物
效应器
免疫学
细胞生物学
病毒学
医学
疾病
内科学
传染病(医学专业)
2019年冠状病毒病(COVID-19)
作者
Avijit Dutta,Shi‐Chuen Miaw,Jhang-Sian Yu,Tse‐Ching Chen,Chun‐Yen Lin,Yung‐Chang Lin,Chia‐Shiang Chang,Yueh-Chia He,Sheng-Hao Chuang,Ming-I Yen,Ching‐Tai Huang
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:2013-03-19
卷期号:190 (8): 4205-4214
被引量:30
标识
DOI:10.4049/jimmunol.1202434
摘要
Abstract Cytokine storm has been postulated as one of the major causes of mortality in patients with severe respiratory viral infections such as influenza. With the help of an influenza Ag- specific mouse experimental system, we report that CD4+ T cells contribute effector cytokines leading to lung inflammation in acute influenza. Although virus can no longer be detected from tissues 14 d postinfection, virus-derived Ag continues to drive a CD4+ T cell response after viral clearance. Ag-specific CD4+ T cells proliferate and evolve into memory CD4+ T cells efficiently, but the production of effector cytokines is seriously hampered during this phase. This decoupling of proliferation and effector cytokine production doesn’t appear in conjunction with increased suppression by regulatory T cells or decreased induction of transcription factors. Rather, GATA-3 and ROR-γt levels are elevated when compared with cells that have effector cytokine production. T-bet dominance over GATA-3 and ROR-γt decreases with the disarmament of effector cytokine production. Importantly, upon reinfection, these decoupled cells produce elevated levels of IFN-γ and were effective in virus eradication. These results provide a mechanism through altered T-bet dominance to dampen the cytokine storm without impeding the generation of memory T cells in influenza virus infection.
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