决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Human CD3 complex is required for the generation of T-cell receptor-like chimeric antigen receptor targeting WT1 in natural killer cells.
我们的研究结果提供了支持生成功能性 TCR 样 CAR-WT1 NK-92 细胞的可行性的证据,从而扩大了 CAR-NK 细胞治疗的靶向抗原范围,包括细胞内抗原。
嵌合抗原受体自然杀伤(CAR-NK)细胞代表了一种有前途的针对各种癌症的细胞免疫治疗平台,提供了良好的临床安全性,并具有生产现成产品的潜力。然而,CAR-NK细胞的更广泛应用在一定程度上受到表面肿瘤抗原的可用性的限制。 T细胞受体(TCR)样CAR由于能够识别主要组织相容性复合物分子呈递的细胞内肿瘤抗原衍生的肽而受到越来越多的关注。在本研究中,我们设计了一种由 HLA-A*02:01 呈递的第三代 CAR 靶向 WT1(126-134) 肽,包含与 CD28、4-1BB 和 CD3 信号传导域连接的 TCR 样 scFv (CAR-WT1),并将其引入人类 NK-92 细胞(FDA 批准的唯一用于临床试验的 NK 细胞系)。有趣的是,我们发现 NK-92 细胞中 CAR-WT1 的表面表达需要人 CD3 复合物的存在,正如在全长 TCR 中观察到的那样。定量 PCR 以及随后的通路和网络分析表明,增强的免疫激活可能与 CAR-WT1/CD3 NK-92 细胞中的效应器功能相关。与未转导的 NK-92 细胞相比,建立的 CAR-WT1/CD3 NK-92 细胞对 WT1 + /HLA-A2 + 靶肿瘤细胞表现出明显更大的细胞毒性,这与功能性细胞因子的释放一致。一旦 CAR-WT1 在 NK-92 细胞表面表达,表面 CD3 似乎对于 NK 细胞毒性来说是可有可无的。总之,我们的研究结果提供了支持生成功能性 TCR 样 CAR-WT1 NK-92 细胞的可行性的证据,从而扩大了 CAR-NK 细胞治疗的靶向抗原范围,包括细胞内抗原。其他表面表达受损的 TCR 样 CAR 可能会使用相同的策略引入 NK-92 细胞中,有待进一步验证。
Chimeric antigen receptor-natural killer (CAR-NK) cells represent a promising cellular immunotherapy platform for various cancers, offering a favorable clinical safety profile and potential to generate off-the-shelf products. However, broader application of CAR-NK cells is in part restricted by the availability of surface tumor antigens. T-cell receptor (TCR)-like CARs have gained increasing attention due to their ability to recognize peptides derived from intracellular tumor antigens presented by major histocompatibility complex molecules. In the present study, we designed a third-generation CAR targeting WT1(126-134) peptide presented by HLA-A*02:01, harboring a TCR-like scFv linked to CD28, 4-1BB, and CD3 signaling domains (CAR-WT1), and introduced it into human NK-92 cells-the only FDA-approved NK cell line for clinical trials. Interestingly, we found that surface expression of CAR-WT1 in NK-92 cells required the presence of human CD3 complex, as observed for full-length TCRs. Quantitative PCR and subsequent pathway and network analyses indicated enhanced immune activation potentially relevant to effector function in CAR-WT1/CD3 NK-92 cells. The established CAR-WT1/CD3 NK-92 cells exhibited significantly greater cytotoxicity against WT1 + /HLA-A2 + target tumor cells than its non-transduced NK-92 cells, consistent with the release of functional cytokines. Once CAR-WT1 was expressed on NK-92 cell surface, surface CD3 appeared dispensable for NK cytotoxicity. Together, our findings provide evidence supporting the feasibility for generating functional TCR-like CAR-WT1 NK-92 cells, thereby broadening the scope of targetable antigens for CAR-NK cell therapy to include intracellular antigens. Other TCR-like CARs with impaired surface expression may be introduced in NK-92 cells using the same strategy, pending further validation.
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