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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Epigenetic landscapes drive CAR-T cell kinetics and fate decisions: Bridging persistence and resistance.
Epigenetic landscapes drive CAR-T cell kinetics and fate decisions: Bridging persistence and resistance.
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CAR-T(CAR-T)细胞疗法改变了B细胞恶性肿瘤治疗模式,并有望用于实体瘤免疫治疗。然而,CAR-T 治疗仍面临许多挑战,尤其是原发性和继发性耐药。既往研究已发现若干耐药机制,包括CAR-T 细胞功能障碍、抑制性肿瘤微环境及肿瘤内在耐药。随着对CAR-T 细胞生物学认识加深,表观遗传重编程对CAR-T 临床疗效的影响日益受到重视。越来越多直接或间接靶向表观遗传机制的方法正在与CAR-T 疗法联合开发。本综述重点阐述表观遗传疗法与CAR-T 治疗之间广泛的药理学联系,不仅涉及CAR-T 细胞本身,也包括肿瘤细胞及肿瘤微环境。为解释表观遗传疗法促进CAR-T 治疗的机制,本文全面综述CAR-T 细胞动力学和分化的表观遗传基础、肿瘤内在因素及微环境,并介绍当前和未来具有应用前景的表观遗传策略。由于表观遗传靶向可能产生多效性影响,下一阶段研究重点将是开发选择性更高、毒性更低的靶向策略,并确定临床试验中的最佳给药方案。
总之,本文强调表观遗传调控CAR-T 治疗的潜在机制及临床价值。
Chimeric antigen receptor-T (CAR-T) cell therapy has revolutionized the treatment paradigm for B-cell malignancies and holds promise for solid tumor immunotherapy.
However, CAR-T-cell therapy still faces many challenges, especially primary and secondary resistance. Some mechanisms of resistance, including CAR-T-cell dysfunction, an inhibitory tumor microenvironment, and tumor-intrinsic resistance, have been identified in previous studies. As insights into CAR-T-cell biology have increased, the role of epigenetic reprogramming in influencing the clinical effectiveness of CAR-T cells has become increasingly recognized.
An increasing number of direct and indirect epigenetic targeting methods are being developed in combination with CAR-T-cell therapy. In this review, we emphasize the broad pharmacological links between epigenetic therapies and CAR-T-cell therapy, not only within CAR-T cells but also involving tumors and the tumor microenvironment.
To elucidate the mechanisms through which epigenetic therapies promote CAR-T-cell therapy, we provide a comprehensive overview of the epigenetic basis of CAR-T-cell kinetics and differentiation, tumor-intrinsic factors and the microenvironment.
We also describe some epigenetic strategies that have implications for CAR-T-cell therapy in the present and future. Because targeting epigenetics can have pleiotropic effects, developing more selective and less toxic targeting strategies and determining the optimal administration strategy in clinical trials are the focus of the next phase of research. In summary, we highlight the possible mechanisms and clinical potential of epigenetic regulation in CAR-T-cell therapy.
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