首页> 外文期刊>International Journal for Parasitology >Natural regulatory (CD4+CD25+FOXP+) T cells control the production of pro-inflammatory cytokines during Plasmodium chabaudi adami infection and do not contribute to immune evasion.
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Natural regulatory (CD4+CD25+FOXP+) T cells control the production of pro-inflammatory cytokines during Plasmodium chabaudi adami infection and do not contribute to immune evasion.

机译:天然调节性(CD4 + CD25 + FOXP +)T细胞可控制Chapaudi chabaudi adami感染期间促炎性细胞因子的产生,并且不会助长免疫逃避。

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摘要

Different functions have been attributed to natural regulatory CD4+CD25+FOXP+ (Treg) cells during malaria infection. Herein, we assessed the role for Treg cells during infections with lethal (DS) and non-lethal (DK) Plasmodium chabaudi adami parasites, comparing the levels of parasitemia, inflammation and anaemia. Independent of parasite virulence, the population of splenic Treg cells expanded during infection, and the absolute numbers of activated CD69+ Treg cells were higher in DS-infected mice. In vivo depletion of CD25+ T cells, which eliminated 80% of CD4+FOXP3+CD25+ T cells and 60-70% of CD4+FOXP3+ T cells, significantly decreased the number of CD69+ Treg cells in mice with lethal malaria. As a result, higher parasite burden and morbidity were measured in the latter, whereas the kinetics of infection with non-lethal parasites remained unaffected. In the absence of Treg cells, parasite-specific IFN-gamma responses by CD4+ T cells increased significantly, both in mice with lethal and non-lethal infections, whereas IL-2 production was only stimulated in mice with non-lethal malaria. Following the depletion of CD25+ T cells, the production of IL-10 by CD90(-) cells was also enhanced in infected mice. Interestingly, a potent induction of TNF-alpha and IFN-gamma production by CD4+ and CD90(-) lymphocytes was measured in DS-infected mice, which also suffered severe anaemia earlier than non-depleted infected controls. Taken together, our data suggest that the expansion and activation of natural Treg cells represent a counter-regulatory response to the overwhelming inflammation associated with lethal P.c. adami. This response to infection involves TH1 lymphocytes as well as cells from the innate immune system.
机译:疟疾感染期间,天然调节性CD4 + CD25 + FOXP +(Treg)细胞被归功于不同的功能。在这里,我们评估了Treg细胞在致命(DS)和非致命(DK)疟原虫chabaudi adami寄生虫感染过程中的作用,比较了寄生虫,炎症和贫血的水平。与寄生虫毒力无关,脾脏Treg细胞在感染过程中会扩大,并且DS感染小鼠中活化的CD69 + Treg细胞的绝对数量更高。 CD25 + T细胞的体内消耗消除了80%的CD4 + FOXP3 + CD25 + T细胞和60-70%的CD4 + FOXP3 + T细胞,从而显着减少了致命疟疾小鼠的CD69 + Treg细胞数量。结果,后者的寄生虫负担和发病率更高,而非致命性寄生虫的感染动力学仍然不受影响。在没有Treg细胞的情况下,在具有致死性和非致死性感染的小鼠中,CD4 + T细胞对寄生虫的特异性IFN-γ反应均显着增加,而仅在具有非致死性疟疾的小鼠中刺激IL-2的产生。耗尽CD25 + T细胞后,在感染的小鼠中CD90(-)细胞产生的IL-10也增加了。有趣的是,在DS感染的小鼠中检测到CD4 +和CD90(-)淋巴细胞有效诱导了TNF-α和IFN-γ的产生,它们还比未耗尽的对照组更早遭受了严重的贫血。综上所述,我们的数据表明天然Treg细胞的扩增和活化代表了与致死性P.c相关的压倒性炎症的反调节反应。阿达米。对感染的这种反应涉及TH1淋巴细胞以及先天免疫系统的细胞。

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