首页> 美国卫生研究院文献>PLoS Neglected Tropical Diseases >Monocytes Play an IL-12-Dependent Crucial Role in Driving Cord Blood NK Cells to Produce IFN-g in Response to Trypanosoma cruzi
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Monocytes Play an IL-12-Dependent Crucial Role in Driving Cord Blood NK Cells to Produce IFN-g in Response to Trypanosoma cruzi

机译:单核细胞在驱动脐带血NK细胞产生对克氏锥虫的反应中产生IFN-g中发挥IL-12依赖的至关重要的作用。

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摘要

We previously reported that foetuses congenitally infected with Trypanosoma cruzi, the agent of Chagas disease, mount an adult-like parasite-specific CD8+ T-cell response, producing IFN-g, and present an altered NK cell phenotype, possibly reflecting a post-activation state supported by the ability of the parasite to trigger IFN-g synthesis by NK cells in vitro. We here extended our knowledge on NK cell activation by the parasite. We compared the ability of T. cruzi to activate cord blood and adult NK cells from healthy individuals. Twenty-four hours co-culture of cord blood mononuclear cells with T. cruzi trypomastigotes and IL-15 induced high accumulation of IFN-g transcripts and IFN-g release. TNF-a, but not IL-10, was also produced. This was associated with up-regulation of CD69 and CD54, and down-regulation of CD62L on NK cells. The CD56bright NK cell subset was the major IFN-g responding subset (up to 70% IFN-g-positive cells), while CD56dim NK cells produced IFN-g to a lesser extent. The response points to a synergy between parasites and IL-15. The neonatal response, observed in all newborns, remained however slightly inferior to that of adults. Activation of IL-15-sensitized cord blood NK cells by the parasite required contacts with live/intact parasites. In addition, it depended on the engagement of TLR-2 and 4 and involved IL-12 and cross-talk with monocytes but not with myeloid dendritic cells, as shown by the use of neutralizing antibodies and cell depletion. This work highlights the ability of T. cruzi to trigger a robust IFN-g response by IL-15-sensitized human neonatal NK cells and the important role of monocytes in it, which might perhaps partially compensate for the neonatal defects of DCs. It suggests that monocyte- and IL-12- dependent IFN-g release by NK cells is a potentially important innate immune response pathway allowing T. cruzi to favour a type 1 immune response in neonates.
机译:我们以前曾报道过,胎儿被恰加斯氏锥虫病原发感染,会引起成年寄生虫特异的CD8 + T细胞反应,产生IFN-g,并呈现NK细胞改变表型,可能反映了寄生虫触发体外NK细胞合成IFN-g的能力所支持的激活后状态。我们在这里扩展了我们对寄生虫对NK细胞激活的认识。我们比较了T. cruzi激活健康人的脐带血和成年NK细胞的能力。脐带血单核细胞与克氏锥虫锥虫和IL-15共培养二十四小时,可诱导IFN-g转录物的大量积累和IFN-g的释放。还产生了TNF-α而不是IL-10。这与NK细胞上CD69和CD54的上调以及CD62L的下调有关。 CD56 NK细胞亚群是主要的IFN-g应答亚群(高达70%IFN-g阳性细胞),而CD56 dim NK细胞产生IFN-g。在较小的范围上。响应指向寄生虫和IL-15之间的协同作用。在所有新生儿中观察到的新生儿反应,仍然略逊于成人。寄生虫激活IL-15致敏的脐血NK细胞需要与活/完整寄生虫接触。此外,它依赖于TLR-2和4的参与,并涉及IL-12和与单核细胞但与髓样树突状细胞的串扰,如中和抗体的使用和细胞耗竭所表明的。这项工作强调了克鲁氏锥虫能够通过IL-15致敏的人类新生NK细胞触发强大的IFN-g反应,以及单核细胞在其中的重要作用,这可能部分弥补了DC的新生儿缺陷。这表明NK细胞释放单核细胞和依赖IL-12的IFN-g是潜在的重要先天免疫应答途径,可使克鲁氏梭菌有利于新生儿的1型免疫应答。

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