Dual Role of CXCL8 in Maintaining the Mesenchymal State of Glioblastoma Stem Cells and M2-Like Tumor-Associated Macrophages

间充质干细胞 癌症研究 旁分泌信号 生物 肿瘤微环境 干细胞 肿瘤进展 PI3K/AKT/mTOR通路 重编程 车站3 细胞 细胞生物学 信号转导 癌症 受体 遗传学 肿瘤细胞
作者
Wei Yuan,Qian Zhang,Danling Gu,Chenfei Lu,Deobrat Dixit,Ryan C. Gimple,Yisu Gao,Jiancheng Gao,Daqi Li,Danyang Shan,Lang Hu,Lu Li,Yangqing Li,Shusheng Ci,Hao You,Linping Yan,Kexin Chen,Ningwei Zhao,Chuanhai Xu,Jianyun Lan,Dong Liu,Junxia Zhang,Zhumei Shi,Qiulian Wu,Kailin Yang,Linjie Zhao,Zhixin Qiu,Deguan Lv,Wei Gao,Hui Yang,Fan Lin,Qianghu Wang,Jianghong Man,Chaojun Li,Weiwei Tao,Sameer Agnihotri,Xu Qian,Stephen C. Mack,Nu Zhang,Yongping You,Jeremy Rich,Guan Sun,Xiuxing Wang
出处
期刊:Clinical Cancer Research [American Association for Cancer Research]
卷期号:29 (18): 3779-3792 被引量:4
标识
DOI:10.1158/1078-0432.ccr-22-3273
摘要

Abstract Purpose: The dynamic interplay between glioblastoma stem cells (GSC) and tumor-associated macrophages (TAM) sculpts the tumor immune microenvironment (TIME) and promotes malignant progression of glioblastoma (GBM). However, the mechanisms underlying this interaction are still incompletely understood. Here, we investigate the role of CXCL8 in the maintenance of the mesenchymal state of GSC populations and reprogramming the TIME to an immunosuppressive state. Experimental Design: We performed an integrative multi-omics analyses of RNA sequencing, GBM mRNA expression datasets, immune signatures, and epigenetic profiling to define the specific genes expressed in the mesenchymal GSC subsets. We then used patient-derived GSCs and a xenograft murine model to investigate the mechanisms of tumor-intrinsic and extrinsic factor to maintain the mesenchymal state of GSCs and induce TAM polarization. Results: We identified that CXCL8 was preferentially expressed and secreted by mesenchymal GSCs and activated PI3K/AKT and NF-κB signaling to maintain GSC proliferation, survival, and self-renewal through a cell-intrinsic mechanism. CXCL8 induced signaling through a CXCR2–JAK2/STAT3 axis in TAMs, which supported an M2-like TAM phenotype through a paracrine, cell-extrinsic pathway. Genetic- and small molecule–based inhibition of these dual complementary signaling cascades in GSCs and TAMs suppressed GBM tumor growth and prolonged survival of orthotopic xenograft-bearing mice. Conclusions: CXCL8 plays critical roles in maintaining the mesenchymal state of GSCs and M2-like TAM polarization in GBM, highlighting an interplay between cell-autonomous and cell-extrinsic mechanisms. Targeting CXCL8 and its downstream effectors may effectively improve GBM treatment.
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