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:Advancing CAR-T therapy in prostate cancer: overcoming the tumor microenvironment and enhancing efficacy.
前列腺癌的 CAR-T 疗法是一个快速发展的领域。
背景:前列腺癌(PCa)是男性最常见的恶性肿瘤之一,转移性去势抵抗性PCa(mCRPC)的治疗选择有限。CAR-T(CAR-T)细胞疗法已革新血液系统恶性肿瘤的治疗,但在PCa中的疗效受到肿瘤特异性抗原稀少、免疫抑制性肿瘤微环境(TME)、抗原异质性和安全性问题(如细胞因子释放综合征)等因素限制。 方法:我们对CAR-T细胞疗法治疗PCa的文献进行了全面综述,总结已知的PCa特异性CAR靶点,归纳主要的TME相关及技术障碍,并介绍CAR工程化(包括装甲型CAR-T细胞、基因编辑和代谢重编程)及与其他疗法联合的最新进展。 结果:新兴策略显示出克服这些障碍的潜力。新一代CAR设计(如细胞因子装甲型CAR-T细胞)可能改善TME抑制条件下的T细胞浸润和持续性。调节肿瘤代谢和免疫检查点可逆转T细胞耗竭。多抗原CAR和靶向基因编辑(例如破坏PD-1)或可限制抗原逃逸。PCa早期临床试验已显示CAR-T细胞可特异识别前列腺相关抗原并引发抗肿瘤免疫反应,但持久缓解仍少见。 结论:CAR-T细胞治疗前列腺癌是一个快速发展的领域。本综述更新了PCa的CAR靶点、工程化策略和联合治疗方法。CAR设计和治疗组合的持续创新有望开发出更有效、持久的晚期前列腺癌CAR-T疗法。
BACKGROUND: Prostate cancer (PCa) is one of the most common malignancies in men, and metastatic castration-resistant PCa (mCRPC) has limited treatment options. While chimeric antigen receptor T (CAR-T) therapy has revolutionized treatment of hematologic cancers, its efficacy in PCa is constrained by factors such as scarce tumor-specific antigens, an immunosuppressive tumor microenvironment (TME), antigen heterogeneity, and safety issues (e.g., cytokine release syndrome). METHODS: We performed a comprehensive literature review of CAR-T therapy in PCa. We summarized known PCa-specific CAR targets, identified major TME-related and technical barriers, and highlighted recent advances in CAR engineering (including armored CAR-T cells, gene editing, and metabolic reprogramming) as well as combination approaches with other therapies. RESULTS: Emerging strategies show promise for overcoming these obstacles. Next-generation CAR designs, such as cytokine-armed CAR-T cells, may enhance T cell infiltration and persistence despite the suppressive TME. Modulating tumor metabolism and immune checkpoints can reverse T cell exhaustion. Multi-antigen CARs and targeted gene edits (for example, PD-1 disruption) may limit antigen escape. Early clinical trials in PCa have demonstrated CAR-T cells specifically recognizing prostate-associated antigens and eliciting antitumor immune responses, although durable remissions remain rare. CONCLUSION: CAR-T therapy for prostate cancer is a rapidly advancing field. This review provides an updated perspective on CAR-T targets, engineering strategies, and combination approaches in PCa. Ongoing innovations in CAR design and therapeutic combinations offer the potential to develop more effective and durable CAR-T treatments for advanced prostate cancer.
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