CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Preclinical evaluation of TIGIT as a target to enhance efficacy and mitigate T cell exhaustion in multiple myeloma following BCMA-CAR-T therapy.
Preclinical evaluation of TIGIT as a target to enhance efficacy and mitigate T cell exhaustion in multiple myeloma following BCMA-CAR-T therapy.
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针对 B 细胞成熟抗原 (BCMA) 的CAR-T 细胞 疗法在复发/难治性多发性骨髓瘤 (RRMM) 中取得了显着疗效,但大多数患者最终会复发,这凸显了阐明耐药机制的必要性。在这项研究中,我们研究了 TIGIT 在 BCMA-CAR-T 疗法耐药中的作用。通过单细胞 RNA 测序分析接受 BCMA-CAR-T 治疗的 RRMM 患者的肿瘤浸润 T 细胞,并通过流式细胞术进一步评估免疫检查点表达。进行功能测定,包括基于荧光素酶的细胞毒性、CD107a 脱颗粒、CFSE 增殖和 CD45RO/CD62L 表型分析,以研究通过敲除或抗 TIGIT 单克隆抗体 (mAb) 抑制 TIGIT 的效果。
在人源化免疫细胞重建小鼠模型中,进一步评估了 TIGIT 阻断对肿瘤生长和 T 细胞耗竭的影响。早期复发患者的 T 细胞比持久缓解患者的 T 细胞表现出更高的 TIGIT 表达,并且 TIGIT 水平升高与肿瘤负荷增加和预后不良相关。虽然 TIGIT 阻断对体外 CAR-T 功能的影响有限,但它显着增强了 CAR-T 增殖,减轻了 T 细胞耗竭,并提高了体内抗肿瘤功效,特别是在由抗 TIGIT mAb 介导时。转录组分析进一步揭示,TIGIT 通过调节细胞因子和趋化因子途径以及 T 细胞激活来调节 CAR-T 活性,这一发现已通过功能测定进行了初步验证。
总的来说,这些发现确定 TIGIT 是 BCMA-CAR-T 疗法耐药性的关键调节因子,并强调 TIGIT 阻断是增强 CAR-T 疗效和克服多发性骨髓瘤复发的有前途的策略。
Chimeric antigen receptor T-cell (CAR-T) therapy targeting B-cell maturation antigen (BCMA) has achieved notable efficacy in relapsed/refractory multiple myeloma (RRMM), yet most patients eventually relapse, highlighting the need to elucidate mechanisms of resistance. In this study, we investigated the role of TIGIT in resistance to BCMA-CAR-T therapy. Tumor-infiltrating T cells from RRMM patients receiving BCMA-CAR-T therapy were analyzed by single-cell RNA sequencing, and immune checkpoint expression was further assessed by flow cytometry. Functional assays, including luciferase-based cytotoxicity, CD107a degranulation, CFSE proliferation, and CD45RO/CD62L phenotyping, were performed to investigate the effects of TIGIT inhibition through knockout or anti-TIGIT monoclonal antibodies (mAbs). In a humanized immune cell-reconstituted mouse model, TIGIT blockade was further evaluated for its effects on tumor growth and T cell exhaustion.
T cells from patients with early relapse exhibited higher TIGIT expression than those from patients with durable responses, and elevated TIGIT levels were correlated with increased tumor burden and poor prognosis. While TIGIT blockade exerted limited effects on CAR-T function in vitro, it markedly enhanced CAR-T proliferation, mitigated T cell exhaustion, and improved antitumor efficacy in vivo, particularly when mediated by anti-TIGIT mAbs.
Transcriptomic profiling further revealed that TIGIT modulates CAR-T activity by regulating cytokines and chemokines pathways and T cell activation, findings that were preliminarily validated by functional assays. Collectively, these findings identify TIGIT as a critical regulator of resistance to BCMA-CAR-T therapy and highlight TIGIT blockade as a promising strategy to enhance CAR-T efficacy and overcome relapse in multiple myeloma.
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