孤舟蓑笠翁
(2025-10-19 21:12):
paper 【doi】10.1016/j.cell.2025.09.021;【发表年份】2025年;【期刊】Cell;【标题】CRATER tumor niches facilitate CD8+ T cell engagement and correspond with immunotherapy success。【内容总结】本研究旨在揭示免疫治疗中CD8+ T细胞与肿瘤细胞相互作用的空间动态,发现了一种称为CRATER(癌症抗原呈递和T细胞接触保留区)的特殊肿瘤微环境结构。通过斑马鱼体内长期成像、高分辨率空间转录组学(Slide-seqV2)以及人类黑色素瘤的多重免疫荧光分析,研究发现CRATER是位于肿瘤-基质边界的口袋状区域,富含抗原呈递分子(如B2M和HLA-A),并聚集了最高密度的CD8+ T细胞。在斑马鱼模型中,CD8+ T细胞在CRATER内与黑色素瘤细胞形成长时间接触(类似抗原识别),免疫刺激(如CpG ODN)后CRATER扩大成为CD8+ T细胞激活(IFN-γ表达增加)和肿瘤杀伤(TUNEL+细胞密度在CRATER内显著升高)的主要位点;人类黑色素瘤中,CRATER密度在免疫检查点阻断(ICB)治疗应答者中显著高于非应答者(如治疗后活检显示CRATER线性密度增加),且CRATER内CD163+树突状细胞高表达PD-L1和抗原呈递分子。结论:CRATER是促进CD8+ T细胞介导肿瘤杀伤的关键功能单元,其密度可作为免疫治疗疗效的潜在生物标志物。
CRATER tumor niches facilitate CD8+ T cell engagement and correspond with immunotherapy success
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Abstract:
T cell-mediated tumor killing underlies immunotherapy success. Here, we used long-term in vivo imaging and high-resolution spatial transcriptomics of zebrafish endogenous melanoma, as well as multiplex imaging of human melanoma, to identify domains facilitating the immune response during immunotherapy. We identified cancer regions of antigen presentation and T cell engagement and retention (CRATERs) as pockets at the stroma-melanocyte boundaries of zebrafish and human melanoma. CRATERs are rich in antigen-recognition molecules, harboring the highest density of CD8 T cells in tumors. In zebrafish, CD8 T cells formed prolonged interactions with melanoma cells within CRATERs, characteristic of antigen recognition. Following immunostimulatory treatment, CRATERs expanded, becoming the major sites of activated CD8 T cell accumulation and tumor killing. In humans, elevation in CRATER density in biopsies following immune checkpoint blockade (ICB) therapy correlated with a clinical response to therapy. CRATERs are structures that show active tumor killing and may be useful as a diagnostic indicator for immunotherapy success.
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