基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Multi-omics analysis of ST3GAL4-mediated lacto/neolacto glycosphingolipid metabolism reveals immune evasion and poor prognosis in TNBC.
Multi-omics analysis of ST3GAL4-mediated lacto/neolacto glycosphingolipid metabolism reveals immune evasion and poor prognosis in TNBC.
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ST3GAL4 驱动的鞘糖脂代谢促进 TNBC 的肿瘤免疫逃逸和侵袭性。这一代谢-免疫偶联轴代表了一个潜在的治疗靶点,为联合代谢和免疫检查点阻断策略提供了机制依据。
三阴性乳腺癌(TNBC)是一种高度侵袭性的亚型,缺乏有效的靶向治疗。越来越多的证据强调代谢重编程是肿瘤进展和免疫逃逸的标志。然而,在此背景下,TNBC的具体代谢-免疫机制仍不清楚。
我们对来自 TCGA、GEO 和 10X Genomics 的 TNBC 与非 TNBC 样本进行了整合性多组学分析,结合了 bulk RNA-seq、single-cell RNA-seq 和 spatial transcriptomics。对 85 条 KEGG 代谢通路进行了分析,以识别 TNBC 特异性改变。使用机器学习模型(Random Forest、XGBoost)对关键代谢基因进行优先级排序。使用 CIBERSORT、ssGSEA 和 ESTIMATE 算法评估免疫浸润。通过安徽中医药大学第一附属医院 100 例临床样本的 immunohistochemistry(IHC)进行验证。
与癌旁组织和非TNBC组织相比,Lacto/Neolacto鞘糖脂代谢通路在TNBC中显著激活,并与更差预后相关。机器学习鉴定出ST3GAL4为该通路的核心酶。ST3GAL4高表达与调节性T细胞(Tregs)和M2巨噬细胞浸润增加、CD8+ T细胞活性降低以及上皮-间质转化增强相关。空间转录组学证实ST3GAL4高表达区域中免疫抑制细胞局部富集。IHC验证表明,TNBC组织中ST3GAL4过表达预示不良临床结局。
Triple-negative breast cancer (TNBC) is a highly aggressive subtype lacking effective targeted therapies. Increasing evidence highlights metabolic reprogramming as a hallmark of tumor progression and immune evasion. However, in this context, the specific metabolic-immune mechanisms underlying TNBC remain unclear.
We performed an integrative multi-omics analysis combining bulk RNA-seq, single-cell RNA-seq, and spatial transcriptomics across TNBC and non-TNBC samples from TCGA, GEO, and 10X Genomics. Eighty-five KEGG metabolic pathways were profiled to identify TNBC-specific alterations. Machine learning models (Random Forest, XGBoost) were used to prioritize key metabolic genes. Immune infiltration was evaluated using CIBERSORT, ssGSEA, and ESTIMATE algorithms. Validation was conducted through immunohistochemistry (IHC) on 100 clinical samples from The First Affiliated Hospital of Anhui University Chinese Medicine.
The Lacto/Neolacto glycosphingolipid metabolism pathway was markedly activated in TNBC compared to adjacent and non-TNBC tissues, correlating with worse prognosis. Machine learning identified ST3GAL4 as the core enzyme within this pathway. High ST3GAL4 expression was associated with increased infiltration of regulatory T cells (Tregs) and M2 macrophages, reduced CD8 + T-cell activity, and enhanced epithelial-mesenchymal transition. Spatial transcriptomics confirmed localized enrichment of immunosuppressive cells in ST3GAL4-high regions. IHC validation demonstrated that ST3GAL4 overexpression in TNBC tissues predicts poor clinical outcomes.
ST3GAL4-driven glycosphingolipid metabolism promotes tumor immune evasion and aggressiveness in TNBC. This metabolic-immune coupling axis represents a potential therapeutic target, offering mechanistic rationale for combining metabolic and immune checkpoint blockade strategies.
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