下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:Construction and characterization of chimeric FcγR T cells for universal T cell therapy.
CFR T 细胞在体外和异种移植小鼠模型中的抗肿瘤效应由 RTX 和 herceptin 等特异性 MoAb 介导。因此,CFR T 细胞具有由 MoAb 引导特异性的通用 T 细胞特征。选择 16s3 CFR T 细胞用于临床试验。
目前正在探索多种工程化通用型 CAR T 细胞的方法。在本研究中,我们构建了嵌合 Fc 受体(Fc R)T 细胞,并测试了其作为通用型 T 细胞治疗通用平台的潜力。
利用三种不同形式的 Fc R(即 CD16A、CD32A 和 CD64)构建了嵌合 Fc R(CFR)构建体。通过脱颗粒实验、特异性靶细胞裂解实验、体外细胞因子产生分析,以及在不同单克隆抗体(MoAbs)条件下对小鼠模型中肿瘤异种移植破坏特异性的评估,评价了 CFR T 细胞的功能。
构建了三种类型的 CFR T 细胞:16s3、32-8a、64-8a CFR T 细胞。在利妥昔单抗(RTX)存在的情况下,三种 CFR T 细胞对 CD20 + Raji-wt、K562-CD20 + 及原代肿瘤细胞的细胞毒性均显著高于 mock T 细胞(P < 0.001)。当使用赫赛汀时,三种 CFR T 细胞对 HER2 + 细胞系 SK-BR-3、SK-OV-3 和 HCC1954 均表现出显著的细胞毒性(P < 0.001)。64-8a CFR T 细胞的细胞毒性在生理剂量游离人 IgG 存在下被显著抑制(P < 0.001),而 16s3、32-8a CFR T 细胞中未观察到这一现象。与 32-8a CFR T 细胞相比,16s3 CFR T 细胞表现出比 32-8a CFR T 细胞更持久的细胞毒性(P < 0.01)。在使用异种移植模型的体内实验中,在 RTX 存在下,16s3 CFR T 细胞显著延长了移植 Raji-wt 细胞小鼠的生存期(P < 0.001),并在赫赛汀存在下有效降低了移植 SK-OV-3 细胞小鼠的肿瘤负荷(P < 0.05)。体内未发现 CFR T 细胞具有显著的非特异性细胞毒性。
BACKGROUND: Several approaches are being explored for engineering off-the-shelf chimeric antigen receptor (CAR) T cells. In this study, we engineered chimeric Fc receptor (Fc R) T cells and tested their potential as a versatile platform for universal T cell therapy. METHODS: Chimeric Fc R (CFR) constructs were generated using three distinct forms of Fc R, namely CD16A, CD32A, and CD64. The functionality of CFR T cells was evaluated through degranulation assays, specific target lysis experiments, in vitro cytokine production analysis, and assessment of tumor xenograft destruction specificity in mouse models using different monoclonal antibodies (MoAbs). RESULTS: Three types of CFR T cells were engineered, 16s3, 32-8a, 64-8a CFR T cells. In the presence of rituximab (RTX), cytotoxicity of all three types of CFR T cells against CD20 + Raji-wt, K562-CD20 + , and primary tumor cells was significantly higher than that of the mock T cells (P < 0.001). When herceptin was used, all three types of CFR T cells exhibited significant cytotoxicity against HER2 + cell lines of SK-BR-3, SK-OV-3, and HCC1954 (P < 0.001). The cytotoxicity of 64-8a CFR T cells was significantly inhibited by free human IgG at a physiological dose (P < 0.001), which was not observed in 16s3, 32-8a CFR T cells. Compared to 32-8a CFR T cells, 16s3 CFR T cells exhibited more prolonged cytotoxicity than 32-8a CFR T cells (P < 0.01). In in vivo assays using xenograft models, 16s3 CFR T cells significantly prolonged the survival of mice xenografted with Raji-wt cells in the presence of RTX (P < 0.001), and effectively reduced tumor burden in mice xenografted with SK-OV-3 cells in the presence of herceptin (P < 0.05). No significant non-specific cytotoxicity of CFR T cells was found in vivo. CONCLUSION: The anti-tumor effects of the CFR T cells in vitro and in xenograft mouse models are mediated by specific MoAbs such as RTX and herceptin. The CFR T cells therefore have the features of universal T cells with specificity directed by MoAbs. 16s3 CFR T cells are chosen for clinical trials.
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