RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Resistance-oriented immunometabolic circuits in laryngeal squamous cell carcinoma: glycolysis-lactate signaling, mitochondrial stress, and tumor-myeloid crosstalk.
Resistance-oriented immunometabolic circuits in laryngeal squamous cell carcinoma: glycolysis-lactate signaling, mitochondrial stress, and tumor-myeloid crosstalk.
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喉鳞状细胞癌(LSCC)因免疫逃逸以及对化疗、放疗和免疫检查点阻断的耐药性,在临床上仍具挑战性。尽管免疫代谢涵盖多种营养、氧化还原和基质通路,但目前LSCC特异性证据最强的领域包括糖酵解/乳酸代谢、线粒体重塑、氧化应激适应、铁死亡相关调控、细胞外囊泡介导的巨噬细胞重塑以及检查点相关T细胞功能障碍。
因此,本聚焦综述探讨以耐药为导向的免疫代谢环路,而非提供所有代谢通路的详尽目录。我们讨论糖酵解激活和乳酸积累如何可能产生营养竞争性和酸性微环境;线粒体应激、ROS适应和铁死亡相关过程如何影响肿瘤存活;以及肿瘤来源囊泡、TAMs、TILs、Tregs、pDCs和新兴的中性粒细胞/CAF相关信号如何塑造免疫逃逸。未被充分探索的轴线,包括脂质和氨基酸代谢、谷氨酰胺依赖性、精氨酸代谢、色氨酸-IDO信号、腺苷代谢、缺氧/HIF信号、NK细胞、MDSCs、内皮细胞以及更广泛的基质-免疫相互作用,被强调为需要LSCC特异性验证的证据空白。本综述提出了一个用于生物标志物开发和合理联合治疗的聚焦框架。
Laryngeal squamous cell carcinoma (LSCC) remains clinically challenging because of immune escape and resistance to chemotherapy, radiotherapy, and immune checkpoint blockade.
Although immunometabolism encompasses diverse nutrient, redox, and stromal pathways, LSCC-specific evidence is currently strongest for glycolysis/lactate metabolism, mitochondrial remodeling, oxidative stress adaptation, ferroptosis-related regulation, extracellular-vesicle-mediated macrophage remodeling, and checkpoint-associated T-cell dysfunction. This focused review therefore examines resistance-oriented immunometabolic circuits rather than providing an exhaustive catalogue of all metabolic pathways.
We discuss how glycolytic activation and lactate accumulation may generate nutrient-competitive and acidic niches; how mitochondrial stress, ROS adaptation, and ferroptosis-related processes influence tumor survival; and how tumor-derived vesicles, TAMs, TILs, Tregs, pDCs, and emerging neutrophil/CAF-related signals shape immune escape.
Underexplored axes, including lipid and amino-acid metabolism, glutamine dependence, arginine metabolism, tryptophan-IDO signaling, adenosine metabolism, hypoxia/HIF signaling, NK cells, MDSCs, endothelial cells, and broader stromal-immune interactions, are highlighted as evidence gaps requiring LSCC-specific validation. This review proposes a focused framework for biomarker development and rational combination therapy.
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