研究概要
这些结果突出表明,TIM-3、LAG-3和2B4的破坏增加了肿瘤特异性细胞产品的治疗益处,并提示IRs在抗肿瘤反应中具有不同的、非冗余的作用。
研究思路结论见上方概要
背景
在过继性T细胞治疗中,接受工程化肿瘤特异性T细胞治疗的患者其长期治疗获益受到输注细胞产品缺乏长期持久性以及肿瘤微环境中活跃的免疫抑制机制的限制。浸润肿瘤的耗竭T细胞以多种抑制性受体(IRs)触发的效应功能丧失为特征。在患者中,IR阻断可逆转T细胞耗竭,但选择性低,可能释放自身反应性克隆并导致临床自身免疫副作用。此外,细胞治疗中长期保护性免疫的丧失被归因于输注细胞的效应记忆表型。
方法
我们通过TCR基因编辑(TCR ED)同时将T细胞特异性重定向至NY-ESO-1抗原,并通过CRISPR/Cas9永久性破坏LAG3、TIM-3或2B4基因(IR KO),采用一种扩增早期分化的长寿命记忆干细胞T细胞的方案。在短期共培养试验和体外慢性刺激条件下,检测了TCR ED -IR KO和IR competent(TCR ED -IR COMP)细胞的效应功能。最后,在多发骨髓瘤异种移植模型中评估了所开发细胞产品的治疗效果。
结果
我们表明,在慢性刺激下,TCR ED -IR KO细胞通过不同机制在抵抗功能性耗竭方面优于TCR ED -IR COMP细胞,并在体内肿瘤再攻击时有效消除癌细胞。我们的数据表明,TIM-3和2B4的破坏保留了T细胞的脱颗粒能力,而LAG-3的破坏阻止了T细胞中额外抑制性受体的上调。
展开英文摘要原文
BACKGROUND: In adoptive T cell therapy, the long term therapeutic benefits in patients treated with engineered tumor specific T cells are limited by the lack of long term persistence of the infused cellular products and by the immunosuppressive mechanisms active in the tumor microenvironment. Exhausted T cells infiltrating the tumor are characterized by loss of effector functions triggered by multiple inhibitory receptors (IRs). In patients, IR blockade reverts T cell exhaustion but has low selectivity, potentially unleashing autoreactive clones and resulting in clinical autoimmune side effects. Furthermore, loss of long term protective immunity in cell therapy has been ascribed to the effector memory phenotype of the infused cells.
METHODS: We simultaneously redirected T cell specificity towards the NY-ESO-1 antigen via TCR gene editing (TCR ED ) and permanently disrupted LAG3 , TIM-3 or 2B4 genes (IR KO ) via CRISPR/Cas9 in a protocol to expand early differentiated long-living memory stem T cells. The effector functions of the TCR ED -IR KO and IR competent (TCR ED -IR COMP ) cells were tested in short-term co-culture assays and under a chronic stimulation setting in vitro . Finally, the therapeutic efficacy of the developed cellular products were evaluated in multiple myeloma xenograft models.
RESULTS: We show that upon chronic stimulation, TCR ED -IR KO cells are superior to TCR ED -IR COMP cells in resisting functional exhaustion through different mechanisms and efficiently eliminate cancer cells upon tumor re-challenge in vivo . Our data indicate that TIM-3 and 2B4-disruption preserve T-cell degranulation capacity, while LAG-3 disruption prevents the upregulation of additional inhibitory receptors in T cells.
CONCLUSION: These results highlight that TIM-3, LAG-3, and 2B4 disruptions increase the therapeutic benefit of tumor specific cellular products and suggest distinct, non-redundant roles for IRs in anti-tumor responses.
论文信息
- 作者
- Cianciotti BC、Magnani ZI、Ugolini A、Camisa B、Merelli I、Vavassori V、Potenza A、Imparato A
- 单位
- Experimental Hematology Unit, IRCCS San Raffaele Scientific Institute, Milan, Italy.Italy
- 文献类型
- 非美国政府资助研究
- 期刊
- Frontiers in immunology2024