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:Umbilical cord blood-derived cytotoxic T lymphocytes target melanoma via HLA-A2-restricted tumour antigens.
Umbilical cord blood-derived cytotoxic T lymphocytes target melanoma via HLA-A2-restricted tumour antigens.
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来自 UCB 和 PB 的抗原特异性 CD8⁺ T 细胞对黑色素瘤显示出相当的细胞毒性效力,尽管抗原特异性 CD8⁺ T 细胞亚群的组成特征不同。
黑色素瘤是一种高度恶性的癌症,预后通常较差,凸显了对有效治疗策略的迫切需求。过继性细胞治疗已成为改善黑色素瘤治疗结局的一种有前景的方式。对于内源性细胞治疗(ECT),外周血(PB)传统上是主要的细胞来源。然而,脐带血(UCB)作为ECT替代来源的潜力尚不清楚,此外T细胞受体(TCR)库也较为有限。这些不足妨碍了ECT在黑色素瘤中的优化和更广泛应用,亟需开展针对性研究解决相关问题。
为评估HLA-A2限制性抗原特异性CD8⁺ T细胞对黑色素瘤细胞的作用,研究在体内外检测了UCB和PB来源CD8⁺ T细胞的细胞毒活性。采用单细胞RNA测序结合TCR V(D)J测序,表征细胞组成并量化特定TCR克隆型频率。使用Simple Olga Sonia算法计算UCB和PB来源抗原特异性CD8⁺ TCR序列的生成概率及其在外周出现的概率。最后,通过分子对接模拟预测分离得到的TCR与肽-MHC(pMHC)的结合亲和力。
UCB与PB来源抗原特异性CD8⁺ T细胞介导的细胞毒作用未见显著差异。表型分析显示,PB来源抗原特异性CD8⁺ T细胞主要为效应和增殖细胞,而UCB来源细胞则主要为记忆细胞。TCR测序发现,PB中抗原特异性TCR克隆型多样性更高,而UCB来源TCR表现出较强的pMHC结合能力。分子对接模拟证实,两种来源中分离得到的TCR克隆均具有较高结合亲和力。
UCB和PB来源抗原特异性CD8⁺ T细胞对黑色素瘤具有相当的细胞毒效力,但抗原特异性CD8⁺ T细胞亚群组成不同。候选TCR可被肿瘤相关抗原MART1和gp100有效激活。这种激活可扩展现有TCR库,从而缓解既往TCR库有限的制约。 要点:既往黑色素瘤内源性T细胞治疗使用成人外周血作为细胞来源并取得一定效果,但效应T细胞的细胞组成尚不明确;脐带血能否用作内源性T细胞治疗的细胞资源库也未明确。本研究证明,脐带血T细胞可用作此类治疗的细胞资源库,并进一步阐明脐带血与外周血中的抗原特异性T细胞组成有所不同:外周血来源细胞主要为增殖性T细胞,脐带血来源细胞则主要包括效应T细胞和记忆T细胞。最后,研究通过TCR测序获得了能够靶向黑色素瘤的TCR,扩展了相应的TCR数据库。
Melanoma is recognized as a highly malignant cancer with a generally poor prognosis, underscoring the critical need for effective therapeutic strategies. Adoptive cell therapy has emerged as a promising modality to improve treatment outcomes in melanoma. For endogenous cell therapy (ECT), peripheral blood (PB) has traditionally served as the primary cell source. However, the potential of umbilical cord blood (UCB) as an alternative source for ECT remains unclear. Furthermore, the repertoire of TCRs remains limited. These deficiencies impede the optimization and broader application of ECT for melanoma, highlighting the necessity for focused investigations to resolve these issues.
To evaluate the effects of HLA-A2 restricted antigen-specific CD8⁺ T cells on melanoma cells, the cytotoxic activity of CD8⁺ T cells derived from UCB and PB were conducted in vivo and in vitro assays. Single-cell RNA sequencing combined with TCR V(D)J sequencing was employed to characterize cellular composition and quantify the frequencies of specific TCR clonotypes. The generation probability and peripheral occurrence probability of antigen-specific CD8⁺ TCR sequences from UCB and PB were computed using the Simple Olga Sonia algorithm. Finally, molecular docking simulations were conducted to predict the binding affinity between isolated TCRs and pMHC.
No significant differences were observed in the cytotoxic effects mediated by antigen-specific CD8⁺ T cells derived from UCB versus PB. Phenotypic analysis revealed that PB-derived antigen-specific CD8⁺ T cells were predominantly effector and proliferating cells, whereas those from UCB consisted largely of memory cells. TCR sequencing identified a greater diversity of antigen-specific TCR clonotypes in PB, meanwhile UCB-derived TCRs exhibited strong pMHC binding. Molecular docking simulations confirmed high binding affinity between pMHC and TCR clones isolated from both sources.
Antigen-specific CD8⁺ T cells from UCB and PB display comparable cytotoxic efficacy against melanoma, albeit with distinct compositional profiles of antigen-specific CD8⁺ T cell subsets. Candidate TCRs can be effectively activated by the tumor-associated antigens MART1 and gp100. This activation promotes the expansion of the available TCR repertoires, thereby mitigating the previous constraint of a limited TCR library. KEY POINTS: Endogenous T-celltherapy for melanoma has used adult peripheral blood as the cell source andachieved certain results, but the cellular components of effector T cells werenot clear. At the same time, it was not clear whether umbilical cord bloodcould be used as a cell resource bank for endogenous T-cell therapy. This studydemonstrated that T cells from umbilical cord blood can be used as a cellresource bank for endogenous T-cell therapy. It further clarified that thereare different components of antigen-specific T cells in umbilical cord bloodand peripheral blood. Antigen-specific T cells from peripheral blood are mainlyproliferative T cells, while those from umbilical cord blood are mainlyeffector T cells and memory T cells. Finally, TCR sequencing was used to obtainTCRs that can target melanoma, expanding the corresponding TCR database.
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