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:Phase I/II clinical trial of adoptive cell transfer of sorted specific T cells for metastatic melanoma patients.
Phase I/II clinical trial of adoptive cell transfer of sorted specific T cells for metastatic melanoma patients.
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肿瘤特异性T淋巴细胞的过继性细胞转移(ACT)是治疗转移性黑色素瘤患者的一种重要治疗策略。理想的T细胞应兼具肿瘤特异性和反应性以及在体内存活的能力,同时避免自身免疫副作用。
在此,我们报告了一项I/II期临床试验(NCT02424916,于2015年至2018年间进行)的结果,其中6例转移性HLA-A2黑色素瘤患者接受了由PBMC产生的自体抗原特异性T细胞,这些细胞经过体外肽刺激,随后用HLA-肽多聚体分选并扩增。每例患者接受了Melan-A和MELOE-1多克隆特异性T细胞的组合,其特异性和抗肿瘤反应性在注射前均已检测,并联合皮下IL-2。转移的T细胞还在功能亲和力、多样性和表型方面进行了表征,并评估了其在血液中的持久性。所有患者在第1天血液中均检测到特异性T细胞增加,从第7天起逐渐消失。该ACT后未发生严重不良事件。临床上,5例患者进展,1例患者在治疗后出现部分缓解。输注给该患者的Melan-A和MELOE-1特异性T细胞具有多样性、高亲和力,且高比例的T淋巴细胞共表达PD-1和TIGIT,但其他耗竭标志物较少。
总之,我们证明了使用多聚体分选的Melan-A和MELOE-1特异性T细胞对转移性黑色素瘤患者进行ACT的可行性和安全性。通过基于PD-1和TIGIT共表达选择高反应性T细胞,并与ICI(如抗PD-1)联合,可进一步增强该治疗策略的临床疗效。
Adoptive cell transfer (ACT) of tumor-specific T lymphocytes represents a relevant therapeutic strategy to treat metastatic melanoma patients. Ideal T-cells should combine tumor specificity and reactivity with survival in vivo, while avoiding autoimmune side effects.
Here we report results from a Phase I/II clinical trial (NCT02424916, performed between 2015 and 2018) in which 6 metastatic HLA-A2 melanoma patients received autologous antigen-specific T-cells produced from PBMC, after peptide stimulation in vitro, followed by sorting with HLA-peptide multimers and amplification. Each patient received a combination of Melan-A and MELOE-1 polyclonal specific T-cells, whose specificity and anti-tumor reactivity were checked prior to injection, with subcutaneous IL-2.
Transferred T-cells were also characterized in terms of functional avidity, diversity and phenotype and their blood persistence was evaluated. An increase in specific T-cells was detected in the blood of all patients at day 1 and progressively disappeared from day 7 onwards. No serious adverse events occurred after this ACT.
Clinically, five patients progressed and one patient experienced a partial response following therapy. Melan-A and MELOE-1 specific T-cells infused to this patient were diverse, of high avidity, with a high proportion of T lymphocytes co-expressing PD-1 and TIGIT but few other exhaustion markers.
In conclusion, we demonstrated the feasibility and safety of ACT with multimer-sorted Melan-A and MELOE-1 specific T cells to metastatic melanoma patients. The clinical efficacy of such therapeutic strategy could be further enhanced by the selection of highly reactive T-cells, based on PD-1 and TIGIT co-expression, and a combination with ICI, such as anti-PD-1.
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