基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Breast cancer-derived GM-CSF regulates arginase 1 in myeloid cells to promote an immunosuppressive microenvironment.
Breast cancer-derived GM-CSF regulates arginase 1 in myeloid cells to promote an immunosuppressive microenvironment.
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肿瘤浸润性髓系细胞促进免疫抑制性肿瘤微环境的形成。髓系细胞表达精氨酸酶1(ARG1)通过抑制T细胞功能和消耗细胞外l-精氨酸促进促肿瘤表型,但这一表达的机制,尤其是在乳腺癌中,尚不清楚。在乳腺癌临床样本和我们的小鼠模型中,我们通过对乳腺肿瘤细胞产生的因子进行基因敲除筛选,确定肿瘤来源的GM-CSF是髓系细胞ARG1表达和局部免疫抑制的主要调节因子。髓系细胞ARG1的诱导需要GM-CSF和低pH环境。GM-CSF通过STAT3和p38 MAPK信号传导以及酸通过cAMP信号传导,以不依赖STAT6的方式激活髓系细胞ARG1表达。
重要的是,乳腺肿瘤细胞来源的GM-CSF通过抑制宿主抗肿瘤免疫促进肿瘤进展,与GM-CSF表达极少的肺癌和黑色素瘤相比,驱动了表达ARG1的髓系细胞的显著积累。阻断肿瘤GM-CSF增强了肿瘤特异性过继T细胞疗法和免疫检查点阻断的疗效。
综上所述,我们表明乳腺肿瘤细胞来源的GM-CSF通过调节髓系细胞ARG1表达促进免疫抑制性乳腺癌微环境的发展,并可被靶向以增强乳腺癌免疫治疗。
Tumor-infiltrating myeloid cells contribute to the development of the immunosuppressive tumor microenvironment. Myeloid cell expression of arginase 1 (ARG1) promotes a protumor phenotype by inhibiting T cell function and depleting extracellular l-arginine, but the mechanism underlying this expression, especially in breast cancer, is poorly understood.
In breast cancer clinical samples and in our mouse models, we identified tumor-derived GM-CSF as the primary regulator of myeloid cell ARG1 expression and local immune suppression through a gene-KO screen of breast tumor cell-produced factors. The induction of myeloid cell ARG1 required GM-CSF and a low pH environment. GM-CSF signaling through STAT3 and p38 MAPK and acid signaling through cAMP were required to activate myeloid cell ARG1 expression in a STAT6-independent manner.
Importantly, breast tumor cell-derived GM-CSF promoted tumor progression by inhibiting host antitumor immunity, driving a significant accumulation of ARG1-expressing myeloid cells compared with lung and melanoma tumors with minimal GM-CSF expression. Blockade of tumoral GM-CSF enhanced the efficacy of tumor-specific adoptive T cell therapy and immune checkpoint blockade.
Taken together, we show that breast tumor cell-derived GM-CSF contributes to the development of the immunosuppressive breast cancer microenvironment by regulating myeloid cell ARG1 expression and can be targeted to enhance breast cancer immunotherapy.
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