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CSF-1R inhibition alters macrophage polarization and blocks glioma progression

机译:CSF-1R抑制改变巨噬细胞极化并阻断神经胶质瘤进展

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摘要

Glioblastoma multiforme (GBM) comprises several molecular subtypes including proneural GBM. Most therapeutic approaches targeting glioma cells have failed. An alternative strategy is to target cells in the glioma microenvironment, such as tumor-associated macrophages and microglia (TAMs). Macrophages depend upon colony stimulating factor (CSF)-1 for differentiation and survival. A CSF-1R inhibitor was used to target TAMs in a mouse proneural GBM model, which dramatically increased survival, and regressed established tumors. CSF-1R blockade additionally slowed intracranial growth of patient-derived glioma xenografts. Surprisingly, TAMs were not depleted in treated mice. Instead, glioma-secreted factors including GM-CSF and IFN-γ facilitated TAM survival in the context of CSF-1R inhibition. Alternatively activated/ M2 macrophage markers decreased in surviving TAMs, consistent with impaired tumor-promoting functions. These gene signatures were associated with enhanced survival in proneural GBM patients. Our results identify TAMs as a promising therapeutic target for proneural gliomas, and establish the translational potential of CSF-1R inhibition for GBM.
机译:多形胶质母细胞瘤(GBM)包括几种分子亚型,包括前神经GBM。靶向神经胶质瘤细胞的大多数治疗方法都失败了。另一种策略是靶向神经胶质瘤微环境中的细胞,例如肿瘤相关的巨噬细胞和小胶质细胞(TAM)。巨噬细胞依赖于集落刺激因子(CSF)-1的分化和存活。 CSF-1R抑制剂被用于靶向小鼠proneural GBM模型中的TAM,从而大大提高了生存率,并使已形成的肿瘤消退。 CSF-1R阻断还减慢了患者源性神经胶质瘤异种移植物的颅内生长。出人意料的是,治疗小鼠中的TAM并未耗尽。相反,在CSF-1R抑制的情况下,包括GM-CSF和IFN-γ在内的神经胶质瘤分泌因子促进了TAM的存活。在存活的TAM中,活化的M2巨噬细胞标记物减少,这与肿瘤促进功能受损相一致。这些基因特征与原发性GBM患者生存期延长有关。我们的结果确定TAMs为前神经胶质瘤的有希望的治疗靶标,并建立CSF-1R抑制GBM的翻译潜力。

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