CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Antigen escape in CAR-T therapy: A tumor microenvironment perspective from hematological to solid tumors.
Antigen escape in CAR-T therapy: A tumor microenvironment perspective from hematological to solid tumors.
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CAR-T 细胞疗法在血液系统恶性肿瘤中疗效显著,但抗原逃逸仍是一项重大挑战,尤其在肿瘤微环境(TME)加重这一问题的实体瘤中。抗原逃逸机制包括抗原丢失、表位遮蔽、谱系转换,以及trogocytosis介导的CAR功能障碍。TME可通过物理屏障、免疫抑制细胞和代谢竞争促进免疫逃逸。为克服这些挑战,研究者开发了多靶点CAR-T、基因编辑、表观遗传干预和联合疗法,以提高CAR-T 疗效。新兴策略包括微生物引导的抗原标记、利用纳米技术恢复代谢稳态、分泌TME调节因子的装甲化CAR-T,以及响应TME信号的适应性CAR系统,为靶向“冷”肿瘤提供了新方法。未来的突破可能依赖于协同整合动态CAR系统与工程化TME重塑:通过多靶点和非经典抗原识别实现广泛抗原覆盖,借助微生物、病毒和免疫细胞协同改造TME,并利用分泌免疫调节因子的装甲化CAR-T。结合代谢工程和跨学科创新,这一整合策略有望使CAR-T 细胞协调构建多方面的抗肿瘤生态系统,而非孤立发挥作用。
Chimeric antigen receptor T-cell (CAR-T) therapy has shown remarkable efficacy in hematologic malignancies, but antigen escape remains a major challenge, especially in solid tumors, where the tumor microenvironment (TME) exacerbates the problem. Mechanisms of antigen escape include antigen loss, epitope masking, lineage switching, and trogocytosis-mediated CAR dysfunction. The TME promotes immune evasion through physical barriers, immunosuppressive cells, and metabolic competition. To overcome these challenges, multi-targeted CAR-Ts, gene editing, epigenetic interventions, and combination therapies have been developed to enhance CAR-T efficacy.
Emerging strategies-such as microbial-guided antigen labeling, nanotechnology for metabolic normalization, armored CAR-T secreting TME-modulating agents, and adaptive CAR systems responsive to TME signals-offer new solutions to target "cold" tumors.
Future breakthroughs will rely on synergizing dynamic CAR systems for broad antigen coverage, achieved via multi-targeting and non-canonical antigen recognition, with engineered TME remodeling driven by microbial, viral, and immune cell allies, as well as armored CAR-T cells secreting immunomodulators. Combined with metabolic engineering and interdisciplinary innovation, this integrated approach will effectively enable CAR-T cells to orchestrate a multi-faceted anti-tumor ecosystem rather than functioning in isolation.
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