Ferritin light chain promotes the reprogramming of glioma immune microenvironment and facilitates glioma progression

胶质瘤 重编程 免疫系统 肿瘤微环境 免疫疗法 血管生成 癌症研究 巨噬细胞极化 下调和上调 人口 生物 免疫学 医学 巨噬细胞 细胞 基因 生物化学 体外 遗传学 环境卫生
作者
Hongjiang Li,Yang Liu,Yuezhou Wei,Xueyuan Li,Jiafu Wei,Yang Xu,Lifeng Li,Rong Guo,Di Chen,Peng Gao,Haohao Zhang,Hui Qiu,Zhenyu Zhang,Xianzhi Liu,Dongming Yan
出处
期刊:Theranostics [Ivyspring International Publisher]
卷期号:13 (11): 3794-3813 被引量:1
标识
DOI:10.7150/thno.82975
摘要

Background: Tumor-associated macrophages (TAMs), the most abundant non-tumor cell population in the glioma microenvironment, play a crucial role in immune evasion and immunotherapy resistance of glioblastoma (GBM). However, the regulatory mechanism of the immunosuppressive TME of GBM remains unclear. Methods: Bioinformatics were used to analyse the potential role of ferritin light chain (FTL) in GBM immunology and explore the effects of FTL on the reprogramming of the GBM immune microenvironment and GBM progression. Results: The FTL gene was found to be upregulated in TAMs of GBM at both the bulk and single-cell RNA-seq levels. FTL contributed to the protumor microenvironment by promoting M2 polarization in TAMs via inhibiting the expression of iPLA2β to facilitate the ferroptosis pathway. Inhibition of FTL in TAMs attenuated glioma angiogenesis, promoted the recruitment of T cells and sensitized glioma to anti-PD1 therapy. Conclusion: Our study suggested that FTL promoted the development of an immunosuppressive TME by inducing M2 polarization in TAMs, and inhibition of FTL in TAMs reprogrammed the TME and sensitized glioma to anti-PD1 therapy, providing a new strategy for improving the therapeutic effect of anti-PD1.
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