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首页> 外文期刊>Breast Cancer Research and Treatment >GM-CSF is one of the main breast tumor-derived soluble factors involved in the differentiation of CD11b-Gr1- bone marrow progenitor cells into myeloid-derived suppressor cells
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GM-CSF is one of the main breast tumor-derived soluble factors involved in the differentiation of CD11b-Gr1- bone marrow progenitor cells into myeloid-derived suppressor cells

机译:GM-CSF是与CD11b-Gr1-骨髓祖细胞分化为髓样抑制细胞有关的主要乳腺肿瘤可溶性因子之一

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Recent reports have shown the involvement of tumor burden as well as GM-CSF in supporting myeloid-derived suppressor cells (MDSC). However, it is not known what progenitor cells may differentiate into MDSC in the presence of GM-CSF, and whether FVBN202 transgenic mouse model of spontaneous breast carcinoma may exhibit distinct subset distribution of CD11b+Gr1+ cells. In addition, it is not known why CD11b+Gr1+ cells derived from tumor-free and tumor-bearing animals exhibit different functions. In this study, we determined that GM-CSF was one of the tumor-derived soluble factors that induced differentiation of CD11b-Gr1- progenitor cells from within monocytic/granulocytic bone marrow cells into CD11b+Gr1+ cells. We also showed that CD11b+Gr1+ cells in FVBN202 mice consisted of CD11b+Ly6G-Ly6C+ suppressive and CD11b+Ly6G+Ly6C+ non-suppressive subsets. Previously reported variations between tumor-free and tumor-bearing animals in the function of their CD11b+Gr1+ cells were found to be due to the variations in the proportion of these two subsets. Therefore, increasing ratios of CD11b+Gr1+ cells derived from tumor-free animals revealed their suppressive activity on T cells, in vitro. Importantly, GM-CSF supported the generation of CD11b+Ly6G-Ly6C+ suppressor subsets that inhibited proliferation as well as anti-tumor function of neu-specific T cells. These findings suggest revisiting the use of GM-CSF for the expansion of dendritic cells, ex vivo, for cell-based immunotherapy or as an adjuvant for vaccines for patients with cancer in whom MDSC play a major role in the suppression of anti-tumor immune responses.
机译:最近的报道显示肿瘤负担以及GM-CSF参与支持髓样抑制细胞(MDSC)。但是,尚不清楚在GM-CSF存在下哪些祖细胞可以分化为MDSC,以及自发性乳腺癌的FVBN202转基因小鼠模型是否可能表现出CD11b + Gr1 +细胞的不同亚群分布。此外,尚不清楚为什么无肿瘤和荷瘤动物的CD11b + Gr1 +细胞具有不同的功能。在这项研究中,我们确定GM-CSF是诱导CD11b-Gr1-祖细胞从单核/粒细胞性骨髓细胞分化为CD11b + Gr1 +细胞的肿瘤衍生可溶性因子之一。我们还显示FVBN202小鼠中的CD11b + Gr1 +细胞由抑制性CD11b + Ly6G-Ly6C +和抑制性CD11b + Ly6G + Ly6C +组成。先前报道的无瘤动物和荷瘤动物在其CD11b + Gr1 +细胞功能方面的差异被发现是由于这两个亚群的比例差异所致。因此,来自无肿瘤动物的CD11b + Gr1 +细胞比例的增加揭示了它们在体外对T细胞的抑制活性。重要的是,GM-CSF支持CD11b + Ly6G-Ly6C +抑制子集的产生,该子集抑制neu特异性T细胞的增殖以及抗肿瘤功能。这些发现表明,重新使用GM-CSF体外扩增树突状细胞,用于基于细胞的免疫治疗,或用作MDSC在抑制抗肿瘤免疫中起主要作用的癌症患者疫苗的佐剂回应。

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