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首页> 外文期刊>Viral immunology >Neural stem/progenitor cells induce conversion of encephalitogenic t cells into CD4+-CD25+-FOXP3+ regulatory t cells
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Neural stem/progenitor cells induce conversion of encephalitogenic t cells into CD4+-CD25+-FOXP3+ regulatory t cells

机译:神经干/祖细胞诱导致脑性t细胞转化为CD4 + -CD25 + -FOXP3 +调节性t细胞

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An immune role of neural stem/progenitor cells (NSPCs) has been proposed in many recent studies; however much still remains to be elucidated. In the current investigation, we report that NSPCs possess the ability to convert encephalitogenic T cells into CD4+ -CD25 +-FOXP3+ regulatory T cells (Treg). Encephalitogenic and nonencephalitogenic T cells isolated from sham and Japanese encephalitis virus (JEV) infected animals were co-cultured with mouse NSPCs. Post co-culture, significant increase in the number of Tregs was observed from encephalitogenic T cells co-cultured with NSPCs. This increased conversion was found to be dependent on direct contact between T cells and NSPCs. Neutralization of TGF-β and IFN-γ in NSPC cultures abrogated this increased conversion of encephalitogenic T cells into Tregs. Flow cytometric, quantitative RT-PCR, and immunoblot analysis of both T cells and NSPCs revealed surface and intracellular changes post co-culture. Co-stimulatory molecules (B7) and ICAM-1 were increased on NSPCs post co-culture; levels of TGFβ, IFNγ, and TGFβR1 were also increased in NSPCs. This study provides a basic insight into the interaction between CNS-infiltrating encephalitogenic T cells and NSPCs during viral encephalitis. Conversion of encephalitogenic T cells into CD4+ -CD25 +-FOXP3+ Tregs through interaction with NSPCs indicates an attempt in regulation of excessive inflammation in the CNS.
机译:在最近的许多研究中已经提出了神经干/祖细胞(NSPC)的免疫作用。然而,还有许多事情有待阐明。在当前的调查中,我们报告说,NSPC具有将致脑炎性T细胞转化为CD4 + -CD25 + -FOXP3 +调节性T细胞(Treg)的能力。从假和日本脑炎病毒(JEV)感染的动物中分离出的致脑炎和非脑炎性T细胞与小鼠NSPCs共培养。共培养后,从与NSPC共培养的致脑原性T细胞中观察到Treg的数量显着增加。发现增加的转化取决于T细胞和NSPC之间的直接接触。在NSPC培养物中,TGF-β和IFN-γ的中和作用消除了这种致脑原性T细胞向Tregs转化的增加。 T细胞和NSPC的流式细胞仪,定量RT-PCR和免疫印迹分析揭示了共培养后表面和细胞内的变化。共培养后NSPCs上的共刺激分子(B7)和ICAM-1增加; NSPCs中TGFβ,IFNγ和TGFβR1的水平也升高。这项研究为病毒性脑炎期间中枢神经系统浸润的致脑T细胞和NSPC之间的相互作用提供了基本的见识。通过与NSPC的相互作用,将致脑病性T细胞转化为CD4 + -CD25 + -FOXP3 + Treg,这表明有人试图调节中枢神经系统过度炎症。

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