可扩展生成靶向实体瘤的造血干细胞工程化现成单特异性细胞毒性 T 细胞
Scalable generation of hematopoietic stem cell-engineered off-the-shelf mono-specific cytotoxic T cells targeting solid tumors.
实体瘤的过继性T细胞治疗受到自体制造复杂性的限制,而在异体环境中还存在移植物抗宿主病(GvHD)、HLA限制和供者变异性等风险。
英文原题:Generation of effective and specific human TCRs against tumor/testis antigen NY-ESO-1 in mice with humanized T cell recognition system.
Generation of effective and specific human TCRs against tumor/testis antigen NY-ESO-1 in mice with humanized T cell recognition system.
我们的数据表明,针对NY-ESO-1的高效TCR在人类中可能因耐受机制而被删除,而TCR基因位点转基因小鼠是分离用于过继性T细胞疗法的有效且高度特异性TCR的可靠来源。
针对肿瘤相关抗原(TAA)的高亲和力T细胞受体(TCR)的生成受到耐受机制的损害,这是有效T细胞疗法治疗癌症的一个障碍。NY-ESO-1是一种人类癌症-睾丸抗原,由于其在不同癌症类型中的广泛表达以及在正常组织中的限制性表达,使其成为此类疗法的一个有吸引力的靶点。利用具有多样化人类TCR库的转基因小鼠,我们分离出了针对NY-ESO-1 157-165且受HLA-A*02:01限制的有效TCR。我们通过体外共培养和荷瘤小鼠体内过继性T细胞转移,比较了鼠源TCR与人类来源TCR以及亲和力成熟TCR的功能。采用丙氨酸扫描、x-扫描、LCL实验来解决NY-ESO-1 157-165特异性TCR的交叉反应性。我们还使用人类组织cDNA文库和人类原代细胞来评估临床上靶向NY-ESO-1抗原的过继性T细胞疗法的安全性。其中一个鼠源人类TCR,TCR-ESO,与人类来源的NY-ESO-1 157-165特异性TCR相比,表现出更高的功能性亲和力。TCR-ESO在抗原识别方面似乎与已在临床试验中应用的体外亲和力成熟TCR,TCR 1G4-α95LY,具有相似的效率。与TCR 1G4-α95LY相比,TCR-ESO显示出很小的交叉反应性。我们的数据表明,针对NY-ESO-1的高效TCR在人类中可能因耐受机制而被删除,而TCR基因座转基因小鼠代表了分离用于过继性T细胞疗法的有效且高度特异性TCR的可靠来源。
Generation of high avidity T cell receptors (TCRs) reactive to tumor-associated antigens (TAA) is impaired by tolerance mechanisms, which is an obstacle to effective T cell therapies for cancer treatment. NY-ESO-1, a human cancer-testis antigen, represents an attractive target for such therapies due to its broad expression in different cancer types and the restricted expression in normal tissues. Utilizing transgenic mice with a diverse human TCR repertoire, we isolated effective TCRs against NY-ESO-1 157-165 restricted to HLA-A*02:01. We compared the functions of the murine-derived TCR with human-derived TCRs and an affinity matured TCR, using in vitro co-culture and in vivo adoptive T cell transfer in tumor-bearing mice. Alanine scan, x-scan, LCL assay were employed to address the cross-reactivity of the NY-ESO-1 157-165 specific TCRs. We also used human tissue cDNA library and human primary cells to assess the safety of adoptive T cell therapies targeting NY-ESO-1 antigen in the clinic. One of the murine-derived human TCRs, TCR-ESO, exhibited higher functional avidity compared to human-derived NY-ESO-1 157-165 specific TCRs. TCR-ESO appeared to have similar efficiency in antigen recognition as an in vitro affinity-matured TCR, TCR 1G4-α95LY, which was applied in clinical trials. TCR-ESO showed little cross-reactivity, in contrast to TCR 1G4-α95LY. Our data indicate that highly effective TCRs against NY-ESO-1 are likely deleted in humans due to tolerance mechanisms, and that the TCR gene loci transgenic mice represent a reliable source to isolate effective and highly-specific TCRs for adoptive T cell therapies.
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