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:Harnessing the chimeric antigen receptor engineered cells in gastrointestinal cancer immunotherapy.
Harnessing the chimeric antigen receptor engineered cells in gastrointestinal cancer immunotherapy.
胃肠道(GI)肿瘤构成重大的全球健康问题。
胃肠道(GI)癌症是重要的全球健康问题,患病率持续上升,临床管理仍面临重大困难。表达嵌合抗原受体(CAR)或转基因 T 细胞受体(TCR)的过继细胞疗法可识别并清除癌细胞,已成为实现癌症患者长期缓解的有前景策略。为发挥疗效,工程化细胞必须维持足够的治疗性水平,同时尽量减少肿瘤外毒性;除血液系统恶性肿瘤外,这一点一直难以实现。本综述全面讨论 CAR 免疫细胞治疗 GI 癌症的进展与应用,考察不同细胞来源、CAR 设计策略及最新进展,并按器官总结结直肠癌、胃癌、肝癌和胰腺癌的临床前及临床证据。综述还讨论当前挑战并提出提高疗效和安全性的潜在方法。作者强调 CAR-NK 细胞作为低毒、“现货型”CAR-T 替代方案的独特潜力,并介绍克服实体瘤障碍的创新策略,包括代谢重编程、双靶向和微环境调节。综上,CAR 细胞具有革新胃肠道癌症治疗的显著潜力,并可通过合理联合治疗开辟新的治疗前景。
Gastrointestinal (GI) cancers pose a significant global health concern. Their prevalence is continually increasing, and managing them remains a significant clinical hurdle. Adoptive cell therapies designed to express chimeric antigen receptors (CARs) or transgenic T cell receptors (TCRs) to identify and destroy cancer cells have emerged as a promising strategy for achieving long-term remissions in cancer patients. To be effective, the engineered cells must persist at therapeutically sufficient levels while minimizing off-tumor toxicities, which has proven difficult to realize outside of hematologic malignancies. This review comprehensively discusses the progress and use of CAR-immune cells in treating GI cancers. We looked into different sources of these cells, CAR design strategies, and the latest advancements in CAR-cell therapy for GI cancers, while providing organ-specific preclinical and clinical insights across colorectal, gastric, hepatic, and pancreatic malignancies. Moreover, we discussed the current challenges and suggested potential methods to improve the efficacy and safety of CAR-cell therapy. This review emphasizes the unique potential of CAR-NK cells as low-toxicity, "off-the-shelf" alternatives to CAR-T cells. It details innovative strategies to overcome solid tumor challenges-including metabolic reprogramming, dual-targeting approaches, and microenvironment modulation. It is concluded that CAR cells have significant potential to revolutionize the treatment of gastrointestinal cancer, paving the way for rational combinations that open up new therapeutic perspectives.
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