CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Reprogramming tumor-associated macrophages and interferon-gamma signaling to overcome therapeutic resistance in cancer.
Reprogramming tumor-associated macrophages and interferon-gamma signaling to overcome therapeutic resistance in cancer.
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治疗耐药性仍然是癌症治疗中的主要障碍,并限制了免疫治疗、化疗和靶向治疗的持久性。肿瘤相关巨噬细胞(TAMs)通过由缺氧、血管微环境、代谢应激、肿瘤来源信号和治疗诱导的炎症所塑造的空间和功能异质性程序,促进耐药性的产生。慢性 IFN-γ 暴露也可通过检查点诱导、抗原呈递改变、抑制性反馈信号、代谢重编程和表观遗传重塑来促进适应性耐药。本综述探讨了 TAM 异质性与 IFN-γ 信号如何相互作用以支持治疗逃逸,重点关注巨噬细胞微环境、吞噬作用抵抗、乳酸相关表观遗传调控以及临床相关的反馈环路。
我们还讨论了为什么包括 CSF1R 抑制在内的多种 TAM 靶向策略在临床前模型中显示出比临床试验更强的活性。最后,我们评估了新兴方法,如巨噬细胞重编程、CD47/SIRPα 阻断、CAR-巨噬细胞工程和生物标志物指导的联合治疗。更清晰地理解 TAM 状态、空间背景和 IFN-γ 动态可能改善患者分层,并支持更合理的转化策略以克服治疗耐药性。
Therapeutic resistance remains a major obstacle in cancer treatment and limits the durability of immunotherapy, chemotherapy, and targeted therapy. Tumor-associated macrophages (TAMs) contribute to resistance through spatially and functionally heterogeneous programs shaped by hypoxia, vascular niches, metabolic stress, tumor-derived signals, and therapy-induced inflammation.
Chronic IFN-γ exposure can also promote adaptive resistance through checkpoint induction, altered antigen presentation, suppressive feedback signaling, metabolic rewiring, and epigenetic remodeling. This review examines how TAM heterogeneity and IFN-γ signaling intersect to support therapy evasion, with emphasis on macrophage niches, phagocytosis resistance, lactate-associated epigenetic regulation, and clinically relevant feedback loops.
We also discuss why several TAM-directed strategies, including CSF1R inhibition, have shown stronger activity in preclinical models than in clinical trials.
Finally, we evaluate emerging approaches such as macrophage reprogramming, CD47/SIRPα blockade, CAR-macrophage engineering, and biomarker-guided combination therapy. A clearer understanding of TAM states, spatial context, and IFN-γ dynamics may improve patient stratification and support more rational translational strategies to overcome therapeutic resistance.
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