单细胞追踪揭示黑色素瘤 TIL 治疗过程中肿瘤反应性 T 细胞的可塑性
Single-cell tracking reveals tumor-reactive T cell plasticity during melanoma TIL therapy.
TIL(肿瘤浸润淋巴细胞)过继细胞治疗可在转移性黑色素瘤中诱导持久缓解,然而在体外扩增过程中及回输后,调控肿瘤反应性T细胞命运的克隆和转录动态仍知之甚少。
英文原题:Nodal Expansion, Tumor Infiltration and Exhaustion of Neoepitope-Specific Th Cells After Prophylactic Peptide Vaccination and Anti-CTLA4 Therapy in Mouse Melanoma B16.
肽疫苗相比 mRNA 疫苗具有若干优势,但在诱导抗肿瘤免疫方面通常效果较差。
肽疫苗相比 mRNA 疫苗具有若干优势,但在诱导抗肿瘤免疫方面通常效果较差。限制肽疫苗疗效的瓶颈可能通过追踪和比较成功与失败案例中疫苗诱导的 T 淋巴细胞来阐明。在此,我们应用我们最近建立的新抗原特异性 T 细胞受体(TCR)数据库,来分析接种新抗原肽疫苗后肿瘤特异性 T 细胞的图谱,并将其与应答相关联。小鼠通过预防性接种编码 B16 黑色素瘤新抗原的 p30 肽(Kif18b 基因中的 K739N 突变)进行免疫。接种疫苗小鼠中的 B16F0 黑色素瘤还额外接受了 CTLA-4 检查点阻断治疗。从肿瘤、肿瘤引流淋巴结(tdLNs)和疫苗储库中分离 T 细胞,进行表型分析、按亚群分选并测序 TCR repertoire。该疫苗诱导肿瘤特异性 CD4+ Th 细胞在 tdLNs 中积聚,而在肿瘤中这些细胞存在,且其频率未因疫苗而改变。这些细胞也在疫苗储库中积聚,在那里它们的表型被疫苗组分所偏斜;然而,这些效应较轻微,因为与 tdLNs 相比,细胞数量约低 50 倍。只有部分 p30 特异性 Th 细胞显示出杀肿瘤活性,这通过其在 tdLNs 中的频率与肿瘤大小的反向相关性得以揭示。CTLA-4 阻断未影响肿瘤生长或肿瘤特异性细胞的频率,但确实刺激了 Th 细胞运动。因此,我们表明肿瘤特异性 Th 克隆在 tdLNs 中积聚和/或扩增,这与肿瘤抑制相关,但仅针对其中部分克隆。这些克隆对肿瘤的浸润与生长速率不相关。
Peptide vaccines possess several advantages over mRNA vaccines but are generally less effective at inducing antitumor immunity. The bottlenecks limiting peptide vaccine efficacy could be elucidated by tracking and comparing vaccine-induced T-lymphocytes in successful and unsuccessful cases. Here we have applied our recent database of neoantigen-specific T cell receptors (TCRs) to profile tumor-specific T cells following vaccination with a neoantigen peptide vaccine and to correlate this with the response. Mice were vaccinated prophylactically with p30 peptide encoding B16 melanoma neoantigen (K739N mutation in Kif18b gene). The B16F0 melanoma in the vaccinated mice was additionally treated by a CTLA-4 checkpoint blockade. T cells from the tumors, tumor-draining lymph nodes (tdLNs) and vaccine depots were isolated, phenotyped, sorted by subsets and sequenced for TCR repertoires. The vaccine induced the accumulation of tumor-specific CD4+ Th cells in the tdLNs, while in the tumors these cells were present and their frequencies were not changed by the vaccine. These cells also accumulated at the vaccine depots, where they were phenotypically skewed by the vaccine components; however, these effects were minor due to approximately 50-fold lower cell quantities compared to the tdLNs. Only some of the p30-specific Th cells showed tumoricidal activity, as revealed by the reverse correlation of their frequencies in the tdLNs with the tumor size. The CTLA-4 blockade did not affect the tumor growth or the frequencies of tumor-specific cells but did stimulate Th cell motility. Thus, we have shown that tumor-specific Th clones accumulate and/or expand in the tdLNs, which correlates with tumor suppression but only for some of these clones. Tumor infiltration by these clones is not correlated with the growth rate.
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