CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Vγ2 x PD-L1, a Bispecific Antibody Targeting Both the Vγ2 TCR and PD-L1, Improves the Anti-Tumor Response of Vγ2Vδ2 T Cell.
Vγ2 x PD-L1, a Bispecific Antibody Targeting Both the Vγ2 TCR and PD-L1, Improves the Anti-Tumor Response of Vγ2Vδ2 T Cell.
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Vγ2Vδ2 T细胞强大的细胞毒性使其在过继性T细胞转移治疗中具有吸引力。将扩增的Vγ2Vδ2 T细胞输注到癌症患者中显示出良好的耐受性,但临床缓解率仍有待提高,这意味着这种新型抗肿瘤疗法在低毒性方面仍存在未满足的疗效需求。
在本研究中,我们测试了一种基于Y体的双特异性抗体(bsAb)Vγ2 x PD-L1的抗肿瘤疗效,该抗体优先重定向Vγ2Vδ2 T细胞以对抗PD-L1阳性肿瘤细胞。凭借对Vγ2Vδ2 T细胞和PD-L1+肿瘤细胞的纳摩尔级亲和力,Vγ2 x PD-L1将Vγ2Vδ2 T细胞与SKOV3肿瘤细胞桥接,形成细胞间偶联。以PD-L1依赖的方式,该bsAb引发扩增的Vγ2Vδ2 T细胞的有效活化(CD25+CD69+)、IFNγ释放、脱颗粒(CD107a+)和细胞因子产生(IFNγ+和TNFα+)。Vγ2Vδ2 T细胞的活化可消除表达PD-L1的人癌细胞系,包括H1975、SKOV3、A375、H1299和H2228细胞,但不包括PD-L1阴性细胞,包括HEK-293(293)细胞和健康PBMCs。
最后,我们表明,将Vγ2 x PD-L1与过继转移Vγ2Vδ2 T细胞相结合,可抑制已有肿瘤异种移植物的生长,并增加Vγ2Vδ2 T细胞进入肿瘤床的数量。Vγ2 x PD-L1代表了一种有前景的试剂,可提高过继转移的Vγ2Vδ2 T细胞在治疗PD-L1阳性恶性肿瘤中的疗效。
The potent cytotoxic property of Vγ2Vδ2 T cells makes them attractive for adoptive T cell transfer therapy. The transfusing of the expanded Vγ2Vδ2 T cells into cancer patients shows well-tolerated, but the clinical response rates are required to be improved, implying that there is still an unmet efficacy with low toxicity for this novel anti-tumor therapy. In this study, we test the anti-tumor efficacy of a Y-body-based bispecific antibody (bsAb) Vγ2 x PD-L1 that preferentially redirects Vγ2Vδ2 T cells to combat PD-L1 positive tumor cells.
With nanomolar affinity levels to Vγ2Vδ2 T cells and PD-L1+ tumor cells, Vγ2 x PD-L1 bridges a Vγ2Vδ2 T cell with a SKOV3 tumor cell to form a cell-to-cell conjugation. In a PD-L1-dependent manner, the bsAb elicits effective activation (CD25+CD69+), IFNγ releasing, degranulation (CD107a+), and cytokine production (IFNγ+ and TNFα+) of expanded Vγ2Vδ2 T cells.
The activations of the Vγ2Vδ2 T cells eliminate PD-L1-expressing human cancer cell lines, including H1975, SKOV3, A375, H1299, and H2228 cells, but not PD-L1 negative cells including HEK-293 (293) cells and healthy PBMCs.
Finally, we show that combining Vγ2 x PD-L1 with adoptively transferring Vγ2Vδ2 T cells inhibits the growth of existing tumor xenografts and increases the number of Vγ2Vδ2 T cells into the tumor bed. Vγ2 x PD-L1 represents a promising reagent for increasing the efficacy of adoptively transferred Vγ2Vδ2 T cells in the treatment of PD-L1 positive malignant tumors.
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