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NK 细胞相关基因驱动的新型分子分型与肾母细胞瘤预后特征:揭示 TGX-221 的治疗潜力及 HS2ST1 的生物标志物作用

英文原题:NK cell-related genes-driven novel molecular subtyping and prognostic signatures for Wilms tumor: uncovering the therapeutic potential of TGX-221 and biomarker role of HS2ST1.

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NK cell-related genes-driven novel molecular subtyping and prognostic signatures for Wilms tumor: uncovering the therapeutic potential of TGX-221 and biomarker role of HS2ST1.

PubMed 2025/08/28(内容时间) Front Oncol Q2 · IF 3.4(JCR 2025)

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研究概要

基于 NKGs 的分子分型和预后特征能够精确识别高危 WT 患者。

中文摘要

Wilms肿瘤(WT)缺乏精准分子分型工具,限制了个体化治疗开发。为解决这一问题,我们探究NK细胞相关基因(NKG)能否改善WT分子分型,以寻找新的治疗策略。

采用一致性聚类对WT进行分子分型,并使用免疫分析算法评估不同亚型的免疫微环境。通过CMap数据库筛选针对鉴定亚型的潜在治疗化合物,再通过分子对接和分子动力学模拟阐明其作用机制。随后开展CCK8、流式细胞术和Transwell等体外细胞实验,评估肿瘤细胞生物学行为。使用机器学习算法构建预后特征,并通过ROC曲线、校准曲线和一致性指数评价其表现。此外,通过单细胞分析研究标志基因的细胞定位与表达,并采用RT-qPCR验证。

我们开发的新型分子分型工具将WT分为预后不同的“免疫富集型”和“免疫荒漠型”。CMap数据库筛选鉴定小分子药物TGX-221为候选调节剂。TGX-221通过双重作用机制显著抑制WT恶性进展:阻断关键致癌Wnt/β-catenin信号通路,并增强肿瘤细胞对NK细胞介导细胞毒性的敏感性。此外,基于HS2ST1、EPI3M和PPP3CA构建的预后特征可有效预测患者结局。值得注意的是,HS2ST1是一种新型生物标志物,可能通过硫酸乙酰肝素介导的Wnt/β-catenin信号增强促进癌症干细胞样特性,凸显其兼具预后指标和治疗靶点的双重价值。

基于NKG的分子分型和预后特征可精准识别WT高危患者。TGX-221是有前景的新型候选疗法,HS2ST1则是潜在预后生物标志物。这些发现共同提供风险分层和靶向治疗工具,推动WT精准肿瘤治疗。

展开英文摘要原文

Wilms tumor (WT) lacks precise molecular subtyping tools, which limits the development of personalized therapies. To address this issue, we investigated whether NK cell-related genes (NKGs) could refine the molecular subtyping of WT, aiming to identify novel therapeutic strategies.

Consensus clustering was employed for the molecular subtyping of WT. The immune microenvironment of different WT subtypes was assessed using immune profiling algorithms. Potential therapeutic compounds targeting the identified subtypes were screened using the CMap database, and their mechanisms of action were elucidated through molecular docking and molecular dynamics simulations. Subsequently, in vitro cell experiments, including CCK8, flow cytometry, and Transwell assays, were performed to assess the biological behavior of tumor cells. A prognostic signatures was constructed using machine learning algorithms, with its performance evaluated by ROC curves, calibration curves, and the concordance index. Additionally, cellular localization and expression of marker genes were investigated through single-cell analysis and validated using RT-qPCR.

We developed novel molecular subtyping tools that classified WT into prognostically distinct subtypes: "immune-rich" and "immune-desert". Screening the CMap database identified the small-molecule drug TGX-221 as a candidate modulator. TGX-221 significantly inhibited the malignant progression of WT through a dual-action mechanism: blocking the key oncogenic Wnt/ -catenin signaling pathway and sensitizing tumor cells to NK cell-mediated cytotoxicity. Furthermore, a prognostic signatures based on HS2ST1, EPI3M, and PPP3CA effectively predicted patient outcomes. Notably, HS2ST1 emerged as a novel biomarker, potentially promoting cancer stem cell-like properties via heparan sulfate-mediated enhancement of Wnt/ -catenin signaling, highlighting its dual value as both a prognostic indicator and a therapeutic target.

Molecular subtyping and prognostic signatures based on NKGs enable the precise identification of high-risk WT patients. Moreover, TGX-221 represents a promising novel therapeutic candidate, while HS2ST1 serves as a potential prognostic biomarker. These findings collectively provide tools for risk stratification and targeted therapy, advancing precision oncology for WT.

论文信息

作者
Hong P、Hu Z、Lin J、Cui K、Gao Z、Tian X、Lin T、Shi Q
单位
Department of Urology, Children's Hospital of Chongqing Medical University, Chongqing, China.China
期刊
Frontiers in oncology2025
原文标识
PubMed 40951342 · DOI 10.3389/fonc.2025.1593011