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Dendritic Cell Editing by Activated Natural Killer Cells Results in a More Protective Cancer-Specific Immune Response

机译:激活的自然杀伤细胞对树突状细胞的编辑导致更具保护性的针对癌症的免疫反应

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摘要

Over the last decade, several studies have extensively reported that activated natural killer (NK) cells can kill autologous immature dendritic cells (DCs) in vitro, whereas they spare fully activated DCs. This led to the proposal that activated NK cells might select a more immunogenic subset of DCs during a protective immune response. However, there is no demonstration that autologous DC killing by NK cells is an event occurring in vivo and, consequently, the functional relevance of this killing remains elusive. Here we report that a significant decrease of CD11c+ DCs was observed in draining lymph nodes of mice inoculated with MHC-devoid cells as NK cell targets able to induce NK cell activation. This in vivo DC editing by NK cells was perforin-dependent and it was functionally relevant, since residual lymph node DCs displayed an improved capability to induce T cell proliferation. In addition, in a model of anti-cancer vaccination, the administration of MHC-devoid cells together with tumor cells increased the number of tumor-specific CTLs and resulted in a significant increase in survival of mice upon challenge with a lethal dose of tumor cells. Depletion of NK cells or the use of perforin knockout mice strongly decreased the tumor-specific CTL expansion and its protective role against tumor cell challenge. As a whole, our data support the hypothesis that NK cell-mediated DC killing takes place in vivo and is able to promote expansion of cancer-specific CTLs. Our results also indicate that cancer vaccines could be improved by strategies aimed at activating NK cells.
机译:在过去的十年中,数项研究广泛报道活化的自然杀伤(NK)细胞可以在体外杀死自体未成熟树突状细胞(DC),而它们却保留了完全活化的DC。这导致了一个提议,即在保护性免疫应答过程中,活化的NK细胞可能会选择DC的更具免疫原性的子集。然而,没有证据表明NK细胞的自体DC杀伤是体内发生的事件,因此,这种杀伤的功能相关性仍然难以捉摸。在这里,我们报告说,CD11c + DCs的显着减少是在接种了MHC缺失细胞的小鼠的引流淋巴结中观察到的,这些小鼠是能够诱导NK细胞活化的NK细胞靶标。 NK细胞在体内进行的DC编辑是穿孔素依赖性的,并且在功能上相关,因为残留的淋巴结DC表现出提高的诱导T细胞增殖的能力。此外,在抗癌疫苗接种模型中,缺乏MHC的细胞与肿瘤细胞一起给药可增加肿瘤特异性CTL的数量,并在致死剂量的肿瘤细胞攻击后显着提高小鼠的存活率。 NK细胞的耗竭或使用穿孔素基因敲除小鼠会大大降低肿瘤特异性CTL的扩增及其对肿瘤细胞攻击的保护作用。总体而言,我们的数据支持以下假设:NK细胞介导的DC杀伤发生在体内,并且能够促进癌症特异性CTL的扩增。我们的结果还表明,可以通过旨在激活NK细胞的策略来改善癌症疫苗。

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