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Influenza A virus-induced thymus atrophy differentially affects dynamics of conventional and regulatory T-cell development in mice

机译:甲型流感病毒诱导胸腺萎缩不同影响动力学的传统和监管小鼠t细胞发育

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Foxp3~+ Treg cells, which are crucial for maintenance of self-tolerance, mainly develop within the thymus, where they arise from CD25~+Foxp3~ or CD25~-Foxp3~+ Treg cell precursors. Although it is known that infections can cause transient thymic involution, the impact of infection-induced thymus atrophy on thymic Treg (tTreg) cell development is unknown. Here, we infected mice with influenza A virus (IAV) and studied thymocyte population dynamics post infection. IAV infection caused a massive, but transient thymic involution, dominated by a loss of CD4~+CD8~+ double-positive (DP) thymocytes, which was accompanied by a significant increase in the frequency of CD25~+Foxp3~+ tTreg cells. Differential apoptosis susceptibility could be experimentally excluded as a reason for the relative tTreg cell increase, and mathematical modeling suggested that enhanced tTreg cell generation cannot explain the increased frequency of tTreg cells. Yet, an increased death of DP thymocytes and augmented exit of single-positive (SP) thymocytes was suggested to be causative. Interestingly, IAV-induced thymus atrophy resulted in a significantly reduced T-cell receptor (TCR) repertoire diversity of newly produced tTreg cells. Taken together, IAV-induced thymus atrophy is substantially altering the dynamics of major thymocyte populations, finally resulting in a relative increase of tTreg cells with an altered TCR repertoire.
机译:Foxp3 ~ + Treg细胞,这是至关重要的维护自我耐受性,主要发展在胸腺内,他们来自的地方CD25 ~ + Foxp3 ~或CD25 ~ Foxp3 ~ + Treg细胞体细胞。会导致瞬态胸腺退化,影响侵染诱导的胸腺萎缩胸腺Treg (tTreg)细胞发展是未知的。我们与甲型流感病毒感染小鼠(IAV)和研究了胸腺细胞种群动态感染。瞬态胸腺退化,由损失CD4 ~ + CD8 ~ + double-positive (DP)胸腺细胞,这是伴随着显著增加在CD25的频率~ + Foxp3 ~ + tTreg细胞。微分凋亡易感性实验排除在外的原因相对tTreg细胞增加,和数学建模显示增强tTreg细胞一代无法解释增加的频率tTreg细胞。胸腺细胞,增强出口阳性(SP)胸腺细胞被认为是使役动词。有趣的是,IAV-induced胸腺萎缩导致显著降低t细胞受体(TCR)曲目新近的多样性tTreg细胞产生。胸腺萎缩是大幅改变动力学主要胸腺细胞的数量,最后导致tTreg细胞的相对增加改变了TCR曲目。

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