CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:T antigen-specific CD8+ T cells associate with PD-1 blockade response in virus-positive Merkel cell carcinoma.
T antigen-specific CD8+ T cells associate with PD-1 blockade response in virus-positive Merkel cell carcinoma.
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Merkel细胞癌(MCC)是一种高度免疫原性的皮肤癌,主要由Merkel细胞多瘤病毒诱导,其驱动因素是致癌性T抗原(T-Ags)的表达。程序性细胞死亡蛋白-1(PD-1)通路的阻断已显示出显著的缓解率,但关于治疗相关的T-Ag特异性免疫反应的证据以及针对无应答部分的治疗策略均有限。
我们使用DNA条形码pMHC多聚体,追踪了26例接受抗PD1治疗的MCC患者外周血中的T-Ag反应性CD8+ T细胞,这些多聚体展示了致癌蛋白预测HLA配体组中的所有肽段,覆盖33种I类单倍型。
我们观察到T细胞对T-Ags的广泛识别,包括鉴定出20个我们认为新颖的T-Ag衍生表位。治疗期间T-Ag识别谱的拓宽和T细胞频率的增加与临床缓解和延长的无进展生存期密切相关。即使在没有可检测到的T-Ag特异性T细胞的患者中,T-Ag特异性T细胞也可以使用人工抗原呈递支架直接从外周血中进一步扩增和增强。这些T细胞提供了强大的肿瘤排斥能力,同时保留了适合过继性细胞转移的良好表型。这些发现表明,T-Ag特异性T细胞与PD-1阻断的临床结局相关,并且抗原呈递支架可用于增强此类反应。
Merkel cell carcinoma (MCC) is a highly immunogenic skin cancer primarily induced by Merkel cell polyomavirus, which is driven by the expression of the oncogenic T antigens (T-Ags). Blockade of the programmed cell death protein-1 (PD-1) pathway has shown remarkable response rates, but evidence for therapy-associated T-Ag-specific immune response and therapeutic strategies for the nonresponding fraction are both limited.
We tracked T-Ag-reactive CD8+ T cells in peripheral blood of 26 MCC patients under anti-PD1 therapy, using DNA-barcoded pMHC multimers, displaying all peptides from the predicted HLA ligandome of the oncoproteins, covering 33 class I haplotypes.
We observed a broad T cell recognition of T-Ags, including identification of 20 T-Ag-derived epitopes we believe to be novel. Broadening of the T-Ag recognition profile and increased T cell frequencies during therapy were strongly associated with clinical response and prolonged progression-free survival.
T-Ag-specific T cells could be further boosted and expanded directly from peripheral blood using artificial antigen-presenting scaffolds, even in patients with no detectable T-Ag-specific T cells. These T cells provided strong tumor-rejection capacity while retaining a favorable phenotype for adoptive cell transfer.
These findings demonstrate that T-Ag-specific T cells are associated with the clinical outcome to PD-1 blockade and that Ag-presenting scaffolds can be used to boost such responses.
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