免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Vaccination rescues dysfunctional T cell therapy by amplifying rare stem-like antitumor CD8(+) T cells.
Vaccination rescues dysfunctional T cell therapy by amplifying rare stem-like antitumor CD8(+) T cells.
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大多数患者体内的抗肿瘤 CD8+ T 细胞表现出功能失调的表型,限制了过继细胞转移(ACT)对抗癌症的疗效。尽管癌症疫苗可以诱导抗肿瘤干性样 T 细胞(T SL)表型,但其能否在 ACT 过程中逆转 T 细胞功能失调仍不清楚。利用小鼠新抗原特异性肿瘤模型,我们发现同步新抗原疫苗接种增强了以功能失调 T 细胞为主的 ACT 产品的抗肿瘤活性,且依赖于宿主抗原呈递细胞。疫苗接种重塑了免疫抑制性肿瘤微环境,并促进 T SL 细胞扩增至肿瘤和淋巴器官中。在机制上,疫苗接种并不直接挽救功能失调的 T 细胞,而是选择性扩增低频 T SL(输注物中低至 0.1%)以介导肿瘤控制。对一名转移性黑色素瘤患者所接受的、含有稀少抗肿瘤 T SL 细胞(约 1%)的人源功能失调 TIL-ACT 产品进行分析,证实了这些发现,显示仅在同步疫苗接种后才出现完全的临床肿瘤消退以及过继转移的肿瘤特异性 TIL 克隆型的扩增。这些数据表明,同步疫苗可以释放原本无效的功能失调 ACT 中稀有干性样 T 细胞的治疗潜力。
Most antitumor CD8 + T cells in patients exhibit dysfunctional phenotypes, limiting the efficacy of adoptive cell transfer (ACT) against cancer. Although cancer vaccines can induce antitumor stem-like T cell (T SL ) phenotypes, whether they can reverse T cell dysfunction during ACT remains unclear.
Using murine neoantigen-specific tumor models, we show that concurrent neoantigen-vaccination enhances the antitumor activity of ACT-products dominated by dysfunctional T cells, relying on host antigen-presenting cells. Vaccination remodels the immunosuppressive tumor microenvironment and promotes the expansion of T SL cells into tumors and lymphoid organs.
Mechanistically, vaccination does not directly rescue dysfunctional T cells; but selectively amplifies low-frequency T SL (as low as 0. 1% in infusion) to mediate tumor control.
Analysis of human dysfunctional TIL-ACT products containing scarce antitumor T SL cells (~1%) administered to a patient with metastatic melanoma corroborated these findings, demonstrating complete clinical tumor regression, and expansion of adoptively transferred tumor-specific-TIL clonotypes only after concurrent vaccination. These data suggest that concurrent vaccines can unlock the therapeutic potential of rare stem-like T cells within otherwise ineffective dysfunctional ACT.
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