TCR-JANUS 衔接蛋白实现双特异性靶向以克服 TCR-T 细胞治疗中的肿瘤异质性
TCR-JANUS engager proteins enable bispecific targeting to overcome tumor heterogeneity in TCR-T cell therapy.
基于 T 细胞受体(TCR)的免疫疗法受限于肿瘤抗原异质性,后者常导致复发。
英文原题:Combining SiRPα decoy-coengineered T cells and antibodies augments macrophage-mediated phagocytosis of tumor cells.
Combining SiRPα decoy-coengineered T cells and antibodies augments macrophage-mediated phagocytosis of tumor cells.
本研究提示,将 CV1 共工程化 TCR-T 细胞与靶向抗体联合、引导吞噬作用靶向肿瘤细胞,从而利用巨噬细胞,具有重要的临床前景。
靶向 HLA-A2 限制性癌睾抗原表位 NY-ESO-1 157–165(A2/NY)的 T 细胞受体工程化 T 细胞(TCR 工程化 T 细胞)过继转移(ACT),已在多种癌症中产生良好临床反应。改善 ACT 的两种方法是优化 TCR 亲和力,以及共同工程化改造 T 细胞,使其表达能够利用内源免疫的免疫调节分子。我们此前通过计算设计开发了一组结合力增强型 A2/NY-TCR,其中包括 A97L;与野生型(WT)相比,该 TCR 可增强基因改造 T 细胞的体外功能。本研究显示,A97L-T 细胞具有更强的持续存留能力和更好的肿瘤控制效果。为利用肿瘤中的巨噬细胞,我们进一步共同工程化 A97L-T 细胞,使其分泌高亲和力信号调节蛋白(SiRP)诱饵 CV1,以阻断 CD47。虽然 CV1-Fc 共同工程化 A97L-T 细胞在 Winn 实验中显著改善肿瘤生长控制和生存,但在皮下异种移植模型中,包被 CV1-Fc 的 T 细胞被清除。重要的是,人巨噬细胞不会吞噬经 CV1 单体共同工程化的 T 细胞。此外,在 CV1 存在时,avelumab 和 cetuximab 可增强体外巨噬细胞介导的肿瘤细胞吞噬;与 A97L-T 细胞共同给药时可改善肿瘤控制。综上,研究提示将 CV1 共同工程化 TCR-T 细胞与靶向抗体联合,引导巨噬细胞吞噬肿瘤细胞,具有重要临床前景。
The adoptive transfer of T cell receptor-engineered (TCR-engineered) T cells (ACT) targeting the HLA-A2-restricted cancer-testis epitope NY-ESO-1157-165 (A2/NY) has yielded favorable clinical responses against several cancers. Two approaches to improve ACT are TCR affinity optimization and T cell coengineering to express immunomodulatory molecules that can exploit endogenous immunity. By computational design we previously developed a panel of binding-enhanced A2/NY-TCRs including A97L, which augmented the in vitro function of gene-modified T cells as compared with WT. Here, we demonstrated higher persistence and improved tumor control by A97L-T cells. In order to harness macrophages in tumors, we further coengineered A97L-T cells to secrete a high-affinity signal regulatory protein (SiRP ) decoy (CV1) that blocks CD47. While CV1-Fc-coengineered A97L-T cells mediated significantly better control of tumor outgrowth and survival in Winn assays, in subcutaneous xenograft models the T cells, coated by CV1-Fc, were depleted. Importantly, there was no phagocytosis of CV1 monomer-coengineered T cells by human macrophages. Moreover, avelumab and cetuximab enhanced macrophage-mediated phagocytosis of tumor cells in vitro in the presence of CV1 and improved tumor control upon coadministration with A97L-T cells. Taken together, our study indicates important clinical promise for harnessing macrophages by combining CV1-coengineered TCR-T cells with targeted antibodies to direct phagocytosis against tumor cells.
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