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首页> 外文期刊>Science Immunology >An innate IL-25-ILC2-MDSC axis creates a cancer-permissive microenvironment for Apc mutation-driven intestinal tumorigenesis
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An innate IL-25-ILC2-MDSC axis creates a cancer-permissive microenvironment for Apc mutation-driven intestinal tumorigenesis

机译:先天IL-25-ILC2-MDSC轴创建了一种用于APC突变驱动肠道肿瘤发生的癌症的微环境

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Interleukin-25 (IL-25) and group 2 innate lymphoid cells (ILC2s) defend the host against intestinal helminth infection and are associated with inappropriate allergic reactions. IL-33-activated ILC2s were previously found to augment protective tissue-specific pancreatic cancer immunity. Here, we showed that intestinal IL-25-activated ILC2s created an innate cancer-permissive microenvironment. Colorectal cancer (CRC) patients with higher tumor IL25 expression had reduced survival and increased IL-25R-expressing tumor-resident ILC2s and myeloid-derived suppressor cells (MDSCs) associated with impaired antitumor responses. Ablation of IL-25 signaling reduced tumors, virtually doubling life expectancy in an Apc mutation-driven model of spontaneous intestinal tumorigenesis. Mechanistically, IL-25 promoted intratumoral ILC2s, which sustained tumor-infiltrating MDSCs to suppress antitumor immunity. Therapeutic antibody-mediated blockade of IL-25 signaling decreased intratumoral ILC2s, MDSCs, and adenoma/adenocarcinoma while increasing antitumor adaptive T cell and interferon-g (IFN-g)-mediated immunity. Thus, the roles of innate epithelium-derived cytokines IL-25 and IL-33 as well as ILC2s in cancer cannot be generalized. The protumoral nature of the IL-25-ILC2 axis in CRC highlights this pathway as a potential therapeutic target against CRC.
机译:白介素25(IL-25)和2组先天淋巴样细胞(ILC2)捍卫宿主免受肠道蠕虫感染的抗衡,并与不适当的过敏反应有关。先前发现IL-33激活的ILC2可以增加保护性组织特异性胰腺癌免疫。在这里,我们证明了肠道IL-25激活的ILC2产生了先天的癌症允许的微环境。肿瘤IL25表达较高的结直肠癌(CRC)患者的存活率降低,IL-25R表达的肿瘤居民ILC2和髓样衍生的抑制细胞(MDSC)与抗肿瘤受损相关。 IL-25信号传导的消融减少了肿瘤,在自发性肠道肿瘤发生的APC突变驱动模型中,实际上使预期寿命增加了一倍。从机械上讲,IL-25促进了肿瘤内ILC2,该ILC2持续了肿瘤浸润的MDSC以抑制抗肿瘤免疫。治疗性抗体介导的IL-25信号传导的阻断减少了肿瘤内ILC2,MDSC和腺瘤/腺癌,同时增加了抗肿瘤适应性T细胞和干扰素G(IFN-G)介导的免疫力。因此,不能概括过先天上皮上皮细胞因子IL-25和IL-33以及ILC2在癌症中的作用。 CRC中IL-25-ILC2轴的原始性质突出了该途径是针对CRC的潜在治疗靶标。

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