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:CAR-engineered cell therapies: current understandings and future perspectives.
嵌合抗原受体(CAR)工程化细胞疗法是免疫治疗领域的重大突破,最初应用于癌症,如今正拓展至多个临床领域。
嵌合抗原受体(CAR)工程化细胞疗法是免疫治疗领域的重要突破,最初用于癌症治疗,目前正拓展至多种临床领域。此类平台最初为肿瘤治疗开发,如今也越来越多地应用于自身免疫性疾病、感染、纤维化、衰老相关问题和器官移植等非恶性疾病。本综述详述CAR疗法的演进和多样化,包括CAR-T、CAR-NK、CAR巨噬细胞和CAR-NKT细胞,以及新兴的新一代设计。文章介绍CAR结构、信号通路和制备的关键要素,重点讨论其治疗血液系统及实体瘤的应用,同时考虑肿瘤微环境(TME)等挑战。综述还探讨癌症以外的扩展应用,例如靶向CD19/BCMA的CAR-T细胞无需持续免疫抑制即可使狼疮和类风湿关节炎长期缓解;CAR-NK用于靶向HIV;CAR-Treg增强移植耐受;以及衰老细胞靶向CAR降低组织纤维化。文章总结截至2025年的最新研究,以评估疗效、安全性和不良事件,并指出CAR疗法在自身免疫性疾病中的细胞因子释放综合征(CRS)较低。综述还介绍现货型异体产品和逻辑门控CAR等创新,同时指出制备复杂、成本高和抗原逃逸等持续挑战。多发性硬化症领域的KYV-101等试验显示了持续进展及这些疗法转化为临床实践的潜力。总体而言,CAR工程化治疗可实现精准、可编程的免疫调节,为日益广泛的疾病领域开辟先进疗法之路。
Chimeric antigen receptor (CAR)-engineered cell therapies represent a significant breakthrough in immunotherapy, initially in cancer and now expanding into diverse clinical fields. While originally developed for oncology, these platforms are increasingly being adapted for non-malignant conditions such as autoimmune disorders, infectious diseases, fibrosis, ageing-related issues, and organ transplants. This review details the evolution and diversification of CAR modalities- including CAR-T, CAR-NK, CAR-macrophages, and CAR-NKT cells- as well as emerging next-generation designs. It describes the key aspects of CAR structure, signalling pathways, and manufacturing, emphasising their application in treating hematologic and solid tumours, while considering challenges such as the tumour microenvironment (TME). The review also discusses expanding uses beyond cancer- such as CD19/BCMA-targeted CAR-T cells achieving long-term remission in lupus and rheumatoid arthritis without ongoing immunosuppression, CAR-NK approaches targeting HIV, CAR-Tregs enhancing transplant tolerance, and senolytic CARs reducing tissue fibrosis. Up-to-date research through 2025 is summarised to evaluate efficacy, safety, and adverse events, noting that CAR therapies show lower cytokine release syndrome (CRS) in autoimmune diseases. Innovations like off-the-shelf allogeneic products and logic-gated CARS are highlighted, alongside ongoing challenges such as manufacturing complexity, high costs, and antigen escape. Trials like KYV-101 for multiple sclerosis demonstrate continued progress and the potential of these therapies to translate into clinical practice. Overall, CAR-engineered treatments enable precise, programmable immune modulation, paving the way for advanced therapies across an expanding array of diseases.
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