放射基因组学
细胞外基质
胶质瘤
医学
基因沉默
无线电技术
接收机工作特性
癌症研究
计算生物学
病理
优先次序
生物信息学
MMP2型
整合素
生存分析
磁共振成像
肿瘤进展
肿瘤科
细胞外
癌症
系统生物学
作者
Yifan Bie,Xiuyu Chi,Yufan Chen,Chao Zhang,Lin Chen,Wenhui Han,Meng Shao,Guodong Pang,Hai Zhong,Bin Zhao,Ximing Wang,Shicheng Sun
标识
DOI:10.1016/j.xcrm.2026.102775
摘要
Extracellular matrix (ECM) remodeling is essential for glioma invasion, yet lacks non-invasive assessment methods. This study employs radiogenomics to enable non-invasive survival prediction and ECM remodeling assessment in glioma. Utilizing a multi-dataset data (n = 891), an 11-feature radiomics signature is developed stratifying patients into low- and high-Rad-score groups (area under the receiver operator characteristic curve [AUC] = 0.886, 95% confidence interval [CI]: 0.807-0.964 in the training set from two local centers; AUC = 0.828, 95% CI: 0.796-0.893 in the validation set from five public datasets). Radiogenomic analysis (n = 572) reveals differentially expressed genes significantly associated with Rad-scores, particularly enriched in pathways associated with ECM remodeling, and identifies seven related hub genes (MMP2, MMP9, CXCL8, TIMP1, IL-6, COL1A2, and CCL2). These findings are validated using an external radiogenomic dataset and orthotopic (both syngeneic and xenograft) mouse models, where silencing MMP2 reduced Rad-scores and tumor infiltration. This study highlights the potential of MRI-based radiomics signatures in assessing ECM remodeling for survival prediction and improved glioma clinical management.
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