CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Second Primary Cancer After Chimeric Antigen Receptor-T-Cell Therapy: A Review.
Second Primary Cancer After Chimeric Antigen Receptor-T-Cell Therapy: A Review.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
本综述的结果表明,有限的数据提示在 CAR-T 治疗后情境下,意外转基因插入与 SPCs 相关。
重要性:CAR-T 细胞疗法商业化改变了血液癌症的治疗格局。21世纪初大量研究为细胞靶向疗法铺平道路,此类疗法已成为改变淋巴瘤、白血病和多发性骨髓瘤治疗实践的重要方法。
然而,近期有观点关注CAR-T 治疗后第二原发癌(SPC)风险。观察结果:美国食品药品监督管理局(FDA)已收到多例CAR-T 治疗后发生SPC的报告。多数SPC未检测到嵌合抗原受体转基因,只有少数报告显示肿瘤细胞转基因阳性。本综述总结CAR-T 治疗后SPC流行病学和病理生物学的主要文献,并讨论潜在风险缓解策略。结论与意义:本综述结果提示,目前仅有有限数据表明意外转基因插入与CAR-T 治疗后发生SPC相关。尽管如此,仍可实施循证的实用措施和科学策略降低风险,包括优化T细胞制备、采用更安全的合成免疫生物学方法,以及实施高保真基因组检测(包括基线克隆性造血筛查)。这些策略有助于指导下一代CAR-T 产品设计,使其SPC风险最低,并维持有利的获益-风险特征,从而让符合条件患者能够继续接受CAR-T 治疗。
The commercialization of chimeric antigen receptor-T-cell (CAR-T) therapy has changed the landscape of treatment of hematological cancers. Numerous studies from the early 2000s paved the way for cell-based targeted therapeutics, which have been established as practice-changing therapies in lymphoma, leukemia, and multiple myeloma. However, there has been some recent concern about the risk for second primary cancers (SPCs). OBSERVATIONS: Multiple cases of SPCs arising after CAR-T therapy have been reported to the US Food and Drug Administration. Most SPCs have been negative for the chimeric antigen receptor transgene, with rare reports of transgene-positive cancers. This review summarizes the most salient literature on epidemiology and pathobiology of SPCs after CAR-T therapy. Additionally, a discussion is provided on potential mitigation strategies for SPCs after CAR-T therapies.
The results of this review suggest that there are limited data to suggest that inadvertent transgene insertion is associated with SPCs in the post-CAR-T setting. Nonetheless, evidence-based practical solutions and scientific strategies for risk mitigation can be implemented. These include optimization of T-cell manufacturing, application of safer synthetic immunobiology, and implementation of high-fidelity genomic testing, including baseline screening for clonal hematopoiesis. These strategies may inform optimal design of the next generation of CAR-T products that confer minimal risk for SPCs such that the risk-benefit profile remains favorable to proceed with CAR-T administration for eligible patients.
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