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嵌合抗原受体胞内结构域对 CAR-T 细胞特性的影响

英文原题:The Impact of the Intracellular Domains of Chimeric Antigenic Receptors on the Properties of CAR T-cells.

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The Impact of the Intracellular Domains of Chimeric Antigenic Receptors on the Properties of CAR T-cells.

PubMed 2025/07/01(内容时间) Acta Naturae Q4 · IF 1.5(JCR 2025)

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中文摘要

采用嵌合抗原受体(CAR)进行T细胞工程改造,已改变血液系统恶性肿瘤的治疗,并重新指引免疫细胞工程和免疫治疗领域的研究方向。遗憾的是,CAR-T 细胞治疗某些血液系统恶性肿瘤和实体瘤的疗效仍受多种因素限制,包括:(1)CAR-T 细胞应答过强或不足,可能同时由肿瘤细胞或微环境中的耐受,以及嵌合受体结构和功能构型不理想所致;(2)最终CAR-T 细胞产品的功能表型不够理想,这是生产和扩增流程的直接后果;(3)细胞输注患者体内后缺乏充分的CAR-T 控制系统。

因此,当前研究重点是优化CAR结构、改进生产技术并进一步开发CAR-T 细胞改造方法。优化CAR结构、增强改造细胞功能是提高CAR-T 疗效的主要策略。自首代CAR-T 细胞问世以来,已开发出五代CAR,包括在单一分子中采用新型信号和结构域组合,以及在T细胞表面同时表达多种嵌合分子的新系统。合理组合CAR组分应能确保受体对抗原具有高敏感性、形成稳定的免疫突触(IS)、有效共刺激并充分激活CAR-T 细胞。将前沿技术相结合,尤其是用于预测三维生物聚合物结构与性质的机器学习,以及高通量测序和组学方法,为定向改造CAR结构带来了新可能。选择适当的改造方法及共刺激和信号结构域组合,对于增强CAR-T 细胞的细胞毒性、增殖和持续存在至关重要。本综述介绍CAR优化的近期进展,重点讨论旨在增强CAR-T 治疗功能的改造策略。

展开英文摘要原文

The advent of the T-cell engineering technology using chimeric antigen receptors (CARs) has revolutionized the treatment of hematologic malignancies and reoriented the direction of research in the field of immune cell engineering and immunotherapy. Regrettably, the effectiveness of CAR T-cell therapy in specific instances of hematologic malignancies and solid tumors is limited by a number of factors. These include (1) an excessive or insufficient CAR T-cell response, possibly a result of both resistance within the tumor cells or the microenvironment and the suboptimal structural and functional organization of the chimeric receptor; (2) a less-than-optimal functional phenotype of the final CAR T-cell product, which is a direct consequence of the manufacturing and expansion processes used to produce CAR T-cells; and (3) the lack of an adequate CAR T-cell control system post-administration to the patient. Consequently, current research efforts focus on optimizing the CAR structure, improving production technologies, and further developing CAR T-cell modifications. Optimizing the CAR structure to enhance the function of modified cells is a primary strategy in improving the efficacy of CAR T-cell therapy.

Since the emergence of the first CAR T-cells, five generations of CARs have been developed, employing both novel combinations of signaling and structural domains within a single molecule and new systems of multiple chimeric molecules presented simultaneously on the T-cell surface. A well thought-out combination of CAR components should ensure high receptor sensitivity to the antigen, the formation of a stable immune synapse (IS), effective costimulation, and productive CAR T-cell activation.

Integrating cutting-edge technologies - specifically machine learning that helps predict the structure and properties of a three-dimensional biopolymer, combined with high-throughput sequencing and omics approaches - offers new possibilities for the targeted modification of the CAR structure.

Of crucial importance is the selection of specific modifications and combinations of costimulatory and signaling domains to enhance CAR T-cell cytotoxicity, proliferation, and persistence. This review provides insights into recent advancements in CAR optimization, with particular emphasis on modifications designed to enhance the therapeutic functionality of CAR T-cells.

论文信息

作者
Volkov DV、Stepanova VM、Yaroshevich IA、Gabibov AG、Rubtsov YP
单位
Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, 117997 Russia.Russia
期刊
Acta naturae2025 Jul-Sep
原文标识
PubMed 41122323 · DOI 10.32607/actanaturae.27728