CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Cancer immunotherapy under immune pressure: Mechanisms of resistance and the shift toward precision immune engineering.
Cancer immunotherapy under immune pressure: Mechanisms of resistance and the shift toward precision immune engineering.
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癌症免疫治疗已改变了多种恶性肿瘤的治疗格局;然而,由于内在和获得性耐药的出现,持久缓解仍局限于一部分患者。越来越多的证据表明,治疗性免疫压力本身作为一种选择力量塑造肿瘤进化,驱动耐药克隆的扩增。在本综述中,我们综合了目前对主要免疫治疗方式耐药性的分子和细胞机制的理解,包括免疫检查点抑制剂、过继细胞治疗和癌症疫苗。
我们讨论了肿瘤内在改变,如抗原呈递和免疫信号通路的缺陷,以及肿瘤外在因素,包括免疫抑制细胞群体、代谢限制和微生物组介导的调节。
我们进一步审视了这些机制如何在肿瘤微环境中汇聚以限制治疗效果。重点介绍了克服耐药性的新兴策略,包括合理的联合治疗、下一代工程化细胞平台,以及由多组学分析和人工智能赋能的精准引导方法。
总体而言,我们提出耐药性应被理解为治疗性免疫压力的适应性后果。基于癌症免疫编辑的原理,我们讨论了精准免疫工程——一种由肿瘤生物学、免疫背景和预测性生物标志物指导的个性化免疫治疗策略的合理设计——如何可用于预测和克服进化逃逸机制。
Cancer immunotherapy has transformed the treatment landscape across multiple malignancies; however, durable responses remain limited to a subset of patients due to the emergence of intrinsic and acquired resistance. Increasing evidence suggests that therapeutic immune pressure itself acts as a selective force that shapes tumour evolution, driving the outgrowth of resistant clones.
In this review, we synthesise current understanding of the molecular and cellular mechanisms underlying resistance to major immunotherapeutic modalities, including immune checkpoint inhibitors, adoptive cell therapies, and cancer vaccines.
We discuss tumour-intrinsic alterations such as defects in antigen presentation and immune signalling pathways, alongside tumour-extrinsic factors including immunosuppressive cell populations, metabolic constraints, and microbiome-mediated modulation.
We further examine how these mechanisms converge within the tumour microenvironment to limit therapeutic efficacy. Emerging strategies to overcome resistance are highlighted, including rational combination therapies, next-generation engineered cellular platforms, and precision-guided approaches enabled by multi-omics profiling and artificial intelligence.
Collectively, we propose that resistance should be understood as an adaptive consequence of therapeutic immune pressure. Building upon the principles of cancer immunoediting, we discuss how precision immune engineering, the rational design of personalised immunotherapeutic strategies informed by tumour biology, immune context, and predictive biomarkers, may be used to anticipate and overcome evolutionary escape mechanisms.
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