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首页> 外文期刊>Oncoimmunology. >IFNp-producing CX3CR1+ macrophages promote T-regulatory cell expansion and tumor growth in the APCmin/+ / Bacteroides fragilis colon cancer model
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IFNp-producing CX3CR1+ macrophages promote T-regulatory cell expansion and tumor growth in the APCmin/+ / Bacteroides fragilis colon cancer model

机译:产生CX3CR1 +巨噬细胞的IFNP-Charmatory细胞膨胀和肿瘤生长促进APCMIN / + / Bacteroides Fragilis结肠癌模型

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Increased T-regulatory cell activity drives tumor progression in the compound APCmin/+/enterotoxic Bacteroides fragilis colon cancer model. At the same time, how microbially-induced inflammation promotes T-regulatory cell expansion in the dysplastic intestine remains poorly described. Analysis of post-infection immune cell kinetics in the colon lamina propria revealed that CD4+ Foxp3+ cell numbers increased by 25-fold between days 3-14. Importantly, T-regulatory cell expansion was preceded by a 12-fold spike in lamina propria CD11b+ cell numbers between days 0-4; suggesting a link between the myeloid compartment and the T-regulatory cells. Consistent with this notion, in vitro co-culture studies utilizing sorted myeloid cell subsets and CD4+ T-cells demonstrated that the CD11b+CX3CR1+ but not the CD11 b+CX3CR1~- subset preferentially induced Foxp3 expression in CD4+ T-cells. Phenotypic analysis revealed that the CD11b+CX3CR1+ subset represented a homogenous CD64+CD24~-CD103a~- macro-phage population. Global CX3CR1 knockout or conditional depletion of CX3CR1+ myeloid cells resulted in diminished CD4+Foxp3+ cell expansion and a 3 to 6-fold reduction in tumor burden establishing CX3CR1+ macrophages as a major driver of the T-regulatory cell-tumor axis. Quantitative analysis of CD11b+ myeloid cell subsets for IFNβ mRNA revealed that the CX3CR1+ macrophages expressed 15-fold higher levels of IFNβ in comparison to the CX3CR1~- myeloid subset. Antibody mediated neutralization of IFNβ resulted in the suppression of CD4+Foxp3+ cell induction and tumor growth, demonstrating the central role of IFNβ in mediating CX3CR1+ macrophage-driven T-regulatory cell expansion. These studies shed new mechanistic light on the cellular ontogeny of pro-tumorigenic T-regulatory cells in the inflamed colon of the APCmin/+ mouse.
机译:增加的T-调节细胞活性在化合物APCMIN / + /肠毒性Bactoroides Fragilis结肠癌模型中驱动肿瘤进展。同时,微生物诱导的炎症如何促进发育肠内肠中的T-调节细胞膨胀仍然仍然清楚。结肠椎板丙醇中感染后免疫细胞动力学分析显示CD4 + Foxp3 +细胞数在3-14天之间增加25倍。重要的是,在0-4天之间的薄层Propria CD11b +细胞数之前,在T-incumatory细胞膨胀之前。暗示骨髓盒和T-incumatory细胞之间的联系。与这种观点一致,利用分类的髓胚胎子集和CD4 + T细胞的体外共培养研究证明了CD11b + Cx3cr1 +但不是CD11b + Cx3cr1〜 - 子集优先诱导CD4 + T细胞中的FOXP3表达。表型分析显示CD11B + CX3CR1 +子集代表均匀的CD64 + CD24〜-CD103A〜 - 宏噬菌体群。 CX3CR1 +骨髓细胞的全局CX3CR1敲除或有条件耗尽导致CD4 + Foxp3 +电池膨胀减少,肿瘤负荷降低3至6倍,将CX3CR1 +巨噬细胞建立为T-调节细胞 - 肿瘤轴的主要驱动器。 IFNβmRNA的CD11b +骨髓细胞亚群的定量分析显示,与CX3CR1〜 - 骨髓子集相比,CX3CR1 +巨噬细胞表达了15倍的IFNβ水平。 IFNβ的抗体介导的中和导致CD4 + Foxp3 +细胞诱导和肿瘤生长,展示IFNβ在介导CX3CR1 +巨噬细胞驱动的T型调节细胞膨胀中的核心作用。这些研究在APCMIN / +小鼠发炎的结肠中的促致致瘤T型细胞的细胞组织内的新机制光。

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