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首页> 外文期刊>Nature Communications >Glioma-derived IL-33 orchestrates an inflammatory brain tumor microenvironment that accelerates glioma progression
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Glioma-derived IL-33 orchestrates an inflammatory brain tumor microenvironment that accelerates glioma progression

机译:胶质瘤衍生的IL-33核对炎症性脑肿瘤微环境,可加速胶质瘤进展

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Despite a deeper molecular understanding, human glioblastoma remains one of the most treatment refractory and fatal cancers. It is known that the presence of macrophages and microglia impact glioblastoma tumorigenesis and prevent durable response. Herein we identify the dual function cytokine IL-33 as an orchestrator of the glioblastoma microenvironment that contributes to tumorigenesis. We find that IL-33 expression in a large subset of human glioma specimens and murine models correlates with increased tumor-associated macrophages/monocytes/microglia. In addition, nuclear and secreted functions of IL-33 regulate chemokines that collectively recruit and activate circulating and resident innate immune cells creating a pro-tumorigenic environment. Conversely, loss of nuclear IL-33 cripples recruitment, dramatically suppresses glioma growth, and increases survival. Our data supports the paradigm that recruitment and activation of immune cells, when instructed appropriately, offer a therapeutic strategy that switches the focus from the cancer cell alone to one that includes the normal host environment. Elevated levels of interleukin-33 have been associated with poor prognosis in patients with glioma. Here the authors show that glioma-derived IL-33 modulates a pro-tumorigenic immune microenvironment by activating resident and recruiting peripheral innate immune cells.
机译:尽管分子理解更深,但人的胶质母细胞瘤仍然是最常见的难治性和致命癌症之一。众所周知,存在巨噬细胞和小凝血菌抗胶质母细胞瘤的肿瘤发生,防止耐用反应。在此,我们将双重函数细胞因子IL-33鉴定为胶质母细胞瘤微环境的协调仪,其有助于肿瘤率。我们发现在大型人胶质瘤标本和鼠模型中的IL-33表达与增加的肿瘤相关的巨噬细胞/单核细胞/微胶质剂相关。此外,IL-33的核和分泌功能调节趋化因子,共同募集和激活循环和常住先天免疫细胞,产生促致瘤环境。相反,核IL-33跛行招募的丧失,显着抑制了胶质瘤生长,并增加了生存率。我们的数据支持在适当指导时招募和激活免疫细胞的范例,提供了一种治疗策略,其将来自癌细胞的重点单独切换到包括正常宿主环境的癌细胞。白细胞介素-33的升高水平与胶质瘤患者的预后不良有关。在这里,作者表明,胶质瘤衍生的IL-33通过激活居民和招募外周天生的免疫细胞来调节促致致瘤免疫微环境。

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