CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tertiary lymphoid structures in cancer: their development, composition, clinical prognosis, and the drivers of the anti-tumor responses.
Tertiary lymphoid structures in cancer: their development, composition, clinical prognosis, and the drivers of the anti-tumor responses.
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三级淋巴结构(TLS)是在慢性炎症肿瘤微环境下形成的异位淋巴聚集体。跨实体瘤的临床队列研究表明,具有完整生发中心的成熟TLS可作为独立的有利预后生物标志物,并预测对免疫检查点抑制剂的更优应答。
然而,TLS在成熟度、空间定位和细胞组成上的差异导致其免疫刺激或免疫抑制作用的异质性,从而表现出促肿瘤或抗肿瘤的双重功能。
此外,TLS的成熟度评估方法和定义存在显著差异,共同阻碍了TLS的临床评估和靶向治疗。在本综述中,我们整合了当前对TLS发育、分子驱动因素和基质许可的认识,并剖析了TLS在肿瘤内促进抗肿瘤免疫的关键机制。
我们汇总了涵盖病理学、多组学和放射基因组学的标准化TLS检测方法,并进一步探讨了TLS成熟状态、生发中心样反应以及瘤内与瘤周定位在预后和免疫检查点阻断中的转化价值。
我们系统阐述了诱导功能性TLS的治疗策略,剖析了TLS协同增强过继细胞疗法和肿瘤疫苗疗效的内在机制,并概述了阻碍临床转化的主要瓶颈。
总体而言,本工作构建了TLS研究的综合多维框架,并为开发针对人类癌症的TLS靶向免疫疗法提供了可操作的见解。
Tertiary lymphoid structures (TLS) are ectopic lymphoid aggregates formed under chronic inflammatory tumor microenvironments. Clinical cohorts across solid cancers demonstrate that mature TLS with intact germinal centers serve as independent favorable prognostic biomarkers and predict superior responses to immune checkpoint inhibitors.
However, the differences in maturity, spatial localization and cellular composition of TLSs result in heterogeneity in their immunostimulation or immunosuppression, thereby exhibiting dual functions of promoting or anti-tumor.
Furthermore, there are significant differences in the maturity assessment methods and definitions of TLS, which jointly hinder the clinical evaluation and targeted treatment of TLSs. In this review, we integrate current understanding of TLS development, molecular drivers, and stromal licensing, and dissect the key mechanisms by which TLS contribute to anti-tumor immunity within tumors.
We consolidate standardized TLS detection methods encompassing pathology, multi-omics, and radiogenomics, and further explore the translational value of TLS maturation status, germinal center-like responses, and intratumoral versus peritumoral localization in prognosis and immune checkpoint blockade.
We systematically elaborate therapeutic strategies for inducing functional TLS, dissect the intrinsic mechanisms by which TLS synergistically boost the efficacy of adoptive cell therapy and tumor vaccines, and outline major bottlenecks hindering clinical translation. Collectively, this work constructs a comprehensive multi-dimensional framework for TLS research and provides actionable insights to develop TLS-targeted immunotherapies for human cancers.
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