免疫疗法
比例危险模型
肝细胞癌
基因签名
医学
肿瘤科
免疫系统
癌症研究
巨噬细胞
生存分析
免疫学
多元统计
多元分析
内科学
转录组
生物
单变量
基因
CD8型
渗透(HVAC)
转录因子
Lasso(编程语言)
调节器
表型
癌症
生物信息学
作者
Jinglu Yu,C Zhang,Qiqi Tao,Zhengping Yu,Jianjian Zheng,Shanshan Hu
标识
DOI:10.2174/0115680096423728260106145843
摘要
INTRODUCTION: Hepatocellular carcinoma (HCC) poses significant global health and economic challenges, with tumor-associated macrophages (TAMs) implicated in its progression. This study aimed to develop a prognostic signature based on macrophage differentiation-related genes (MDRGs) for HCC risk stratification. MATERIALS AND METHODS: Transcriptomic data from HCC and adjacent tissues were analyzed to identify differentially expressed genes (DEGs). Prognostic MDRGs were screened via univariate Cox regression and refined using LASSO regression. A multivariate Cox-derived risk model was established and validated using Kaplan-Meier survival analysis. Immune infiltration and immunotherapy responses were assessed, alongside in vitro functional validation of key genes. RESULTS: Analysis identified 67 prognostically relevant MDRGs from HCC-specific DEGs. LASSO regression and multivariate Cox analysis yielded a robust 9-MDRG signature. Patients stratified into high-risk groups exhibited significantly shorter survival, elevated macrophage infiltration, and enhanced predicted responses to anti-PD1/CTLA4 therapies. In vitro studies revealed that NCAPG, a transcription factor within the signature, promotes HCC progression by upregulating the core regulator EZH2. DISCUSSION: The established 9-MDRG signature effectively stratifies HCC patients into distinct risk groups with significant prognostic divergence. Its strong association with heightened TAM infiltration underscores the biological relevance of macrophage differentiation in HCC progression. Crucially, the model exhibits predictive value for markers associated with immunotherapy response, suggesting high-risk patients may benefit preferentially from antiPD1/CTLA4 regimens. Furthermore, the mechanistic dissection of the NCAPG-EZH2 axis within the signature unveils a key molecular pathway linking macrophage biology to HCC aggressiveness, nominating NCAPG and EZH2 as novel therapeutic targets. CONCLUSION: We developed a clinically translatable 9-MDRG prognostic model that effectively predicts HCC outcomes and informs immunotherapy strategies. The identified NCAPG-EZH2 axis highlights potential therapeutic targets for macrophage-mediated HCC progression.
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