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:Dual targeting chimeric antigen receptor cells enhance antitumour activity by overcoming T cell exhaustion in pancreatic cancer.
尽管我们之前的数据表明,靶向claudin 18亚型2(CLDN18.2)的嵌合抗原受体(CAR)T细胞在CLDN18.2阳性胃癌中显示出显著的临床疗效,但其在胰腺导管腺癌(PDAC)中的疗效有限。
尽管我们之前的数据表明,靶向claudin 18异构体2(CLDN18.2)的嵌合抗原受体(CAR)T细胞在CLDN18.2阳性胃癌中显示出显著的临床疗效,但其在胰腺导管腺癌(PDAC)中的疗效有限。肿瘤微环境(TME)是限制CAR-T疗效的主要障碍之一,重塑TME可能是克服这一障碍的可能途径。PDAC的TME以丰富的癌相关成纤维细胞(CAFs)为特征,这些细胞阻碍了CLDN18.2靶向CAR-T细胞的浸润和功能。成纤维细胞活化蛋白α(FAP)的表达是活性CAFs的重要特征,为消除CAFs提供了潜在靶点。实验方法:在本研究中,我们构建了10种FAP/CLDN 18.2双靶向CAR-T细胞,并在体外和体内评估了它们的抗肿瘤能力。关键结果:与常规CAR-T细胞相比,一些双靶向CAR-T细胞在小鼠胰腺癌中显示出改善的治疗效果。此外,抗肿瘤效果更好的双靶向CAR-T细胞能够抑制髓源性抑制细胞(MDSCs)的募集,从而改善免疫抑制性TME,这有助于CD8+ T细胞的存活。此外,双靶向CAR-T细胞以转化TGF依赖的方式减少了T细胞的耗竭。结论与意义:双靶向CAR-T细胞获得了T效应功能的增强、T细胞耗竭的抑制以及肿瘤微环境的改善。我们的发现为FAP/CLDN 18.2双靶向CAR-T细胞治疗PDAC提供了理论依据。
BACKGROUND AND PURPOSE: Although our previous data indicated that claudin 18 isoform 2 (CLDN18.2)-targeted chimeric antigen receptor (CAR) T cells displayed remarkable clinical efficacy in CLDN18.2-positive gastric cancer, their efficacy is limited in pancreatic ductal adenocarcinoma (PDAC). The tumour microenvironment (TME) is one of the main obstacles to the efficacy of CAR-T and remodelling the TME may be a possible way to overcome this obstacle. The TME of PDAC is characterized by abundant cancer-related fibroblasts (CAFs), which hinder the infiltration and function of CLDN18.2-targeted CAR-T cells. The expression of fibroblast activation protein alpha (FAP) is an important feature of active CAFs, providing potential targets for eliminating CAFs. EXPERIMENTAL APPROACH: In this study, we generated 10 FAP/CLDN 18.2 dual-targeted CAR-T cells and evaluated their anti-tumour ability in vitro and in vivo. KEY RESULTS: Compared with conventional CAR-T cells, some dual-targeted CAR-T cells showed improved therapeutic effects in mouse pancreatic cancers. Further, dual-targeted CAR-T cells with better anti-tumour effect could suppress the recruitment of myeloid-derived suppressor cells (MDSCs) to improve the immunosuppressive TME, which contributes to the survival of CD8 + T cells. Moreover, dual-targeted CAR-T cells reduced the exhaustion of T cells in transforming TGF- dependent manner. CONCLUSION AND IMPLICATIONS: The dual-targeted CAR-T cells obtained enhancement of T effector function, inhibition of T cell exhaustion, and improvement of tumour microenvironment. Our findings provide a theoretical rationale for dual-targeted FAP/CLDN 18.2 CAR-T cells therapy in PDAC.
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