小胶质细胞
PTEN公司
胶质母细胞瘤
对偶(语法数字)
癌症研究
双重角色
医学
免疫学
生物
炎症
化学
信号转导
细胞生物学
PI3K/AKT/mTOR通路
艺术
文学类
组合化学
作者
Yang Liu,Jinan Wu,Hinda Najem,Yiyun Lin,Lizhi Pang,Fatima Khan,Fei Zhou,Heba Ali,Amy B. Heimberger,Peiwen Chen
摘要
Tumor-associated macrophages and microglia (TAMs) are critical for tumor progression and therapy resistance in glioblastoma (GBM), a type of incurable brain cancer. We previously identified lysyl oxidase (LOX) and olfactomedin like-3 (OLFML3) as essential macrophage and microglia chemokines, respectively, in GBM. Here, single-cell transcriptomics and multiplex sequential immunofluorescence followed by functional studies demonstrate that macrophages negatively correlate with microglia in the GBM tumor microenvironment. LOX inhibition in PTEN-deficient GBM cells upregulates OLFML3 expression via the NF-κB-PATZ1 signaling pathway, inducing a compensatory increase of microglia infiltration. Dual targeting macrophages and microglia via inhibition of LOX and the CLOCK-OLFML3 axis generates potent anti-tumor effects and offers a complete tumor regression in more than 60% of animals when combined with anti-PD1 therapy in PTEN-deficient GBM mouse models. Thus, our findings provide a translational triple therapeutic strategy for this lethal disease.
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