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-T cell therapy in hepatocellular carcinoma: from mechanistic insights to clinical translation.
嵌合抗原受体(CAR)-T细胞疗法已经改变了肿瘤免疫治疗,在血液系统肿瘤中实现了持久的完全缓解。
嵌合抗原受体(CAR)-T细胞疗法已经改变了肿瘤免疫治疗,在血液系统恶性肿瘤中实现了持久的完全缓解。然而,其向肝细胞癌(HCC)等实体瘤的转化面临巨大障碍,HCC是全球癌症相关死亡的主要原因之一,这些障碍包括免疫抑制性肿瘤微环境(TME)、抗原异质性以及on-target/off-tumor毒性风险。本综述讨论了CAR-T疗法在HCC中不断演变的作用,涵盖三个领域:(1)CAR-T设计、作用机制和抗原靶向策略的基础概念;(2)临床前研究和早期临床试验的突破,例如靶向glypican-3(GPC3)和alpha-fetoprotein(AFP)的CAR-T细胞已显示出初步安全性和抗肿瘤活性;(3)克服TME驱动耐药性的创新策略,包括代谢重编程和基质调节。我们重点介绍前沿工程解决方案,如为细胞因子支持而工程化的装甲CAR-T细胞、用于减轻抗原逃逸的双靶向构建体、耐缺氧设计,以及将CAR-T与免疫检查点抑制剂或酪氨酸激酶抑制剂联合的协同方法。此外,我们剖析了破坏TME免疫抑制的新兴策略。尽管CAR-T疗法有望重新定义HCC管理,但其成功将取决于通过患者定制设计和强大的转化管线来克服生物学和后勤障碍。未来方向应优先考虑生物标志物驱动的临床试验、可扩展的生产平台,以及与现有HCC多模式治疗的整合,以最大化持久缓解。
Chimeric antigen receptor (CAR)-T cell therapy has transformed cancer immunotherapy, achieving durable complete remissions in hematologic cancers. Yet its translation to solid tumors like hepatocellular carcinoma (HCC), a leading cause of cancer-related deaths worldwide, faces formidable barriers, including immunosuppressive tumor microenvironments (TMEs), antigen heterogeneity, and risks of on-target/off-tumor toxicity. This review discusses the evolving role of CAR-T therapy in HCC across three domains: (1) foundational concepts in CAR-T design, mechanistic action, and antigen-targeting strategies; (2) breakthroughs from preclinical studies and early-phase clinical trials, such as glypican-3 (GPC3) and alpha-fetoprotein (AFP) directed CAR-T cells that have demonstrated preliminary safety and anti-tumor activity; and (3) innovative strategies to overcome TME-driven resistance, including metabolic reprogramming and stromal modulation. We highlight cutting-edge engineering solutions such as armored CAR-T cells engineered for cytokine support, dual-targeting constructs to mitigate antigen escape, and hypoxia-resistant designs alongside synergistic approaches combining CAR-T with immune checkpoint inhibitors or tyrosine kinase inhibitors. Furthermore, we dissect emerging tactics to disrupt TME immunosuppression. While CAR-T therapy holds promise for redefining HCC management, its success will depend on overcoming biological and logistical barriers through patient-tailored designs and robust translational pipelines. Future directions should prioritize biomarker-driven clinical trials, scalable manufacturing platforms, and integration with existing multimodal HCC therapies to maximize durable responses.
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