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:Mechanisms of Resistance to Novel Immunotherapies in B-Cell Lymphomas: Focus on CAR T and Bispecific Antibodies.
Mechanisms of Resistance to Novel Immunotherapies in B-Cell Lymphomas: Focus on CAR T and Bispecific Antibodies.
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过去几十年中,B细胞淋巴瘤的治疗范式发生了显著演变。然而,免疫治疗的广泛临床应用已表明,其不可避免地会导致耐药性的产生。本综述概述了与新兴免疫治疗策略相关的耐药性潜在分子机制,包括嵌合抗原受体(CAR)T细胞治疗和双特异性抗体(BsAbs)。在高侵袭性B细胞淋巴瘤中,近50%的患者在CAR-T 治疗后出现疾病进展,原因包括影响CAR-T 细胞增殖和持续性的宿主相关因素,以及肿瘤内在因素,如CD19表位表达缺失、胞啃作用(trogocytosis)和其他基因组改变(例如CD19突变、染色体碎裂、APOBEC突变活性以及RHOA缺失)。其他基因组和表观遗传事件,包括突变、CD19的选择性剪接和异常启动子甲基化,进一步促进了耐药性的产生。BsAbs代表一种即用型T细胞重定向策略,近期已显示出有前景的单药疗效,且毒性特征可控,主要表现为T细胞过度活化综合征。与CAR-T 细胞治疗类似,BsAb耐药性通过多种机制产生,如抗原丢失、T细胞功能障碍(耗竭和调节性T细胞活化)、肿瘤内在改变(例如TP53突变和MYC扩增),以及肿瘤微环境的免疫抑制作用。这些发现强调了B细胞淋巴瘤中免疫逃逸的复杂性,并凸显了持续优化免疫治疗策略和开发联合方案以克服耐药性的必要性。
Treatment paradigms for B-cell lymphomas have evolved significantly in the last decades. Nevertheless, the widespread clinical use of immunotherapy has demonstrated that it invariably leads to the development of resistance. This review outlines the underlying molecular mechanisms of resistance associated with emerging immunotherapeutic strategies, including Chimeric Antigen Receptor (CAR) T cell therapy and bispecific antibodies (BsAbs). In high-grade B-cell lymphomas, nearly 50% of patients progress following CAR T treatment due to host-related factors affecting CAR T cell proliferation and persistence, as well as tumor-intrinsic factors, such as loss of CD19 epitope expression, trogocytosis, and other genomic alterations (e. g.
, CD19 mutations, chromothripsis, APOBEC mutational activity, and deletions of RHOA ). Additional genomic and epigenetic events, including mutations, alternative splicing of CD19 , and aberrant promoter methylation, further contribute to resistance. BsAbs, representing an off-the-shelf T-cell-redirecting strategy, have recently shown promising single-agent efficacy with a manageable toxicity profile, predominantly characterized by T cell overactivation syndromes.
Similarly to CAR T cell therapy, BsAb resistance arises through diverse mechanisms, such as antigen loss, T cell dysfunction (exhaustion and regulatory T cell activation), tumor-intrinsic alterations (e. g. , TP53 mutations and MYC amplifications), and immunosuppressive influences from the tumor microenvironment.
These findings underscore the complexity of immune evasion in B-cell lymphomas and highlight the ongoing need to optimize immunotherapeutic strategies and develop combination approaches to overcome resistance.
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