胶质瘤
免疫疗法
生物标志物
癌症研究
生物
肿瘤微环境
医学
免疫学
免疫系统
生物化学
肿瘤细胞
作者
Qisheng Luo,Junhong Zhuang,Dandan Zheng,Changfeng Miao,Hongcheng Luo,Jun Peng,Chuanhua Zheng,Chengjian Qin,Chuanliu Lan,Meiqin Chen,Ying Xia,Deyou Huang,Zigui Chen
标识
DOI:10.3389/fimmu.2023.1282734
摘要
Introduction Copper metabolism encompasses all cellular metabolic processes involving copper ions and plays a significant role in the pathogenesis of diseases, including cancer. Furthermore, copper is intricately involved in various processes related to nucleotide metabolism. However, a comprehensive analysis of copper metabolism in gliomas remains lacking despite its importance. Methods To address this gap, glioma patients were stratified based on the expression levels of copper metabolism-related genes. By utilizing machine learning techniques, a novel copper metabolism-associated biomarker was developed. The potential of this biomarker in prognosis, mutation analysis, and predicting immunotherapy response efficiency in gliomas was systematically investigated. Results Notably, IGFBP2, identified as a glioma tumor promoter, was found to promote disease progression and influence immunotherapy response. Additionally, glioma-derived IGFBP2 was observed to enhance microglial migration. High IGFBP2 expression in GBM cells facilitated macrophage interactions through the EGFR, CD63, ITGB1, and CD44 signaling pathways. Discussion: Overall, the copper metabolism-associated biomarker shows promising potential to enhance the clinical management of gliomas, offering valuable insights into disease prognosis and treatment strategies.
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