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Exogenous interleukin-33 targets myeloid-derived suppressor cells and generates periphery-induced Foxp3+ regulatory T cells in skin-transplanted mice

机译:外源性白介素33靶向髓样来源的抑制细胞并在皮肤移植小鼠体内产生外周诱导的Foxp3 +调节性T细胞

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摘要

Interleukin-33 (IL-33) has been a focus of study because of its variety of functions shaping CD4+ T-cell biology. In the present work, we evaluated the modulatory effect of IL-33 on suppressor cells in an in vivo transplantation model. C57BL/6 wild-type mice were grafted with syngeneic or allogeneic skin transplants and treated with exogenous IL-33 daily. After 10 days of treatment, we analysed draining lymph node cellularity and found in allogeneic animals an increment in myeloid-derived suppressor cells, which co-express MHC-II, and become enriched upon IL-33 treatment. In line with this observation, inducible nitric oxide synthase and arginase 1 expression were also increased in allogeneic animals upon IL-33 administration. In addition, IL-33 treatment up-regulated the number of Foxp3+ regulatory T (Treg) cells in the allogeneic group, complementing the healthier integrity of the allografts and the increased allograft survival. Moreover, we demonstrate that IL-33 promotes CD4+ T-cell expansion and conversion of CD4+ Foxp3 T cells into CD4+ Foxp3+ Treg cells in the periphery. Lastly, the cytokine pattern of ex vivo-stimulated draining lymph nodes indicates that IL-33 dampens interferon-γ and IL-17 production, stimulating IL-10 secretion. Altogether, our work complements previous studies on the immune-modulatory activity of IL-33, showing that this cytokine affects myeloid-derived suppressor cells at the cell number and gene expression levels. More importantly, our research demonstrates for the first time that IL-33 allows for in vivo Foxp3+ Treg cell conversion and favours an anti-inflammatory or tolerogenic state by skewing cytokine production. Therefore, our data suggest a potential use of IL-33 to prevent allograft rejection, bringing new therapeutics to the transplantation field.
机译:白介素33(IL-33)由于其多种功能影响着CD4 + T细胞生物学而成为研究的热点。在目前的工作中,我们在体内移植模型中评估了IL-33对抑制细胞的调节作用。将C57BL / 6野生型小鼠移植到同种或同种异体皮肤移植物中,每天用外源性IL-33进行治疗。治疗10天后,我们分析了引流淋巴结的细胞结构,并发现在同种异体动物中,髓样来源的抑制细胞增加,它们共同表达MHC-II,并在IL-33治疗后变得富集。与该观察一致,在施用IL-33后,同种异体动物中诱导型一氧化氮合酶和精氨酸酶1的表达也增加。此外,IL-33处理上调了同种异体组Foxp3 + 调节性T细胞的数量,从而补充了同种异体移植物的健康完整性和同种异体移植物存活率的提高。此外,我们证明IL-33促进CD4 + T细胞扩增以及CD4 + Foxp3 - T细胞转化为CD4 + Foxp3 + 周围的Treg细胞。最后,体外刺激的引流淋巴结的细胞因子模式表明IL-33抑制了干扰素-γ和IL-17的产生,刺激了IL-10的分泌。总之,我们的工作补充了先前对IL-33免疫调节活性的研究,表明该细胞因子在细胞数量和基因表达水平上影响髓样来源的抑制细胞。更重要的是,我们的研究首次证明IL-33可在体内Foxp3 + Treg细胞转化,并通过使细胞因子产生倾斜来促进抗炎或耐受性状态。因此,我们的数据表明IL-33可能用于防止同种异体移植排斥,为移植领域带来了新的疗法。

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