CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tim-3-targeted vaccines overcome tumor immunosuppression and reduce cDC1 dependence to elicit potent anti-tumor immunity.
Tim-3-targeted vaccines overcome tumor immunosuppression and reduce cDC1 dependence to elicit potent anti-tumor immunity.
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常规1型树突状细胞(cDC1s)专门负责交叉呈递肿瘤抗原,并决定免疫疗法的疗效,包括免疫检查点阻断和过继性细胞疗法。然而,其稀少性和肿瘤诱导的功能障碍严重限制了CD8 T细胞的致敏,并构成疗效的核心瓶颈。尽管抗DEC-205介导的抗原递送和Flt3L驱动的DC扩增等策略可以增强宿主DC功能,但它们对功能性cDC1s的依赖仍是一个重大限制。
我们通过将肿瘤抗原或新抗原与抗Tim-3抗体偶联,开发了Tim-3靶向疫苗。这些疫苗将抗原递送至cDC1s和cDC2s,并引发强效、持久的CD8 T细胞反应。
值得注意的是,Tim-3靶向疫苗赋予cDC2s高效的交叉呈递能力,与cDC1s相当。在荷瘤小鼠或CD11c-β-catenin活性小鼠(模拟β-catenin驱动的DC功能障碍)中,Tim-3靶向疫苗接种恢复了交叉致敏并抵消了肿瘤和DC介导的免疫抑制。在缺乏cDC1s的Batf3 -/- 小鼠中,基于抗Tim-3的疫苗仍引发显著的CD8 T细胞交叉致敏和肿瘤控制——尽管两者均较野生型小鼠降低——表明cDC1s对Tim-3靶向疫苗诱导的CD8 T细胞致敏和抗肿瘤疗效有贡献但并非必需。引人注目的是,单剂抗Tim-3-新抗原疫苗接种以CD8 T细胞依赖的方式根除了大型已建立的MC38肿瘤。
总之,这些数据表明Tim-3靶向疫苗是一种下一代癌症疫苗平台,它拓宽了DC参与范围,减少了对cDC1的依赖,并克服了肿瘤和DC介导的免疫抑制,解决了当前基于DC的癌症疫苗的关键局限性。
Conventional type 1 dendritic cells (cDC1s) are specialized for cross-presenting tumor antigens and determining the efficacy of immunotherapies, including immune checkpoint blockade and adoptive cell therapy.
However, their rarity and tumor-induced dysfunction severely limit CD8 T cell priming and represent a central bottleneck to therapeutic efficacy. While strategies such as anti-DEC-205-mediated antigen delivery and Flt3L-driven DC expansion can enhance host DC function, their reliance on functional cDC1s remains a significant constraint.
We developed Tim-3-targeted vaccines by conjugating tumor antigens or neoantigens to anti-Tim-3 antibodies. These vaccines delivered antigens to both cDC1s and cDC2s, and elicited robust, durable CD8 T cell responses. Remarkably, Tim-3-targeted vaccines endowed cDC2s with efficient cross-presentation capacity that matched that of cDC1s. In tumor-bearing mice or in CD11c-β-catenin active mice, which model β-catenin-driven DC dysfunction, Tim-3-targeted vaccination restored cross-priming and counteracted tumor- and DC-mediated immunosuppression.
In Batf3 -/- mice lacking cDC1s, anti-Tim-3-based vaccines still elicited significant CD8 T cell cross-priming and tumor control-albeit both were reduced compared to wild-type mice- demonstrating that cDC1s contribute to but are not essential for Tim-3-targeted vaccine-induced CD8 T cell priming and anti-tumor efficacy. Strikingly, a single dose of anti-Tim-3-neoantigen vaccination eradicated large established MC38 tumors in a CD8 T cell-dependent manner.
Together, these data identify Tim-3-targeted vaccines as a next-generation cancer vaccine platform that broadens DC engagement, reduces reliance on cDC1s, and overcomes tumor- and DC-mediated immunosuppression, addressing key limitations of current DC-based cancer vaccines.
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