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:Tonic signaling in CAR-T therapy: the lever long enough to move the planet.
Tonic signaling in CAR-T therapy: the lever long enough to move the planet.
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嵌合抗原受体(CAR)T 细胞疗法在治疗血液系统恶性肿瘤方面显示出显著疗效,目前正拓展至自身免疫性疾病、纤维化、衰老和病毒感染等其他适应证。
然而,实体瘤治疗仍面临临床挑战,包括物理屏障、肿瘤异质性、体内持久性不足和 T 细胞耗竭,这些因素均限制疗效。本综述聚焦持续性信号在 CAR-T 治疗中的关键作用。持续性信号是天然和工程化抗原受体在没有抗原刺激时发生的低水平组成型信号,对调节免疫细胞稳态、耗竭、持久性和效应功能发挥关键作用。“峰值理论”认为,CAR-T 功能存在最佳持续性信号强度:信号过弱可能导致增殖和持久性不足,信号过强则可能造成 T 细胞耗竭。本综述还总结持续性信号机制的近期进展,以及精细调节 CAR 持续性信号的策略。通过理解并精确调节持续性信号,可进一步优化 CAR-T 疗效,为治疗更广泛的疾病开辟新途径。这些发现也适用于 CAR-T 之外的工程化免疫细胞疗法,可能影响 CAR-NK 和 CAR-M 等领域。
Chimeric antigen receptor (CAR) T-cell therapy has shown remarkable efficacy in treating hematological malignancies and is expanding into other indications such as autoimmune diseases, fibrosis, aging and viral infection.
However, clinical challenges persist in treating solid tumors, including physical barriers, tumor heterogeneity, poor in vivo persistence, and T-cell exhaustion, all of which hinder therapeutic efficacy. This review focuses on the critical role of tonic signaling in CAR-T therapy. Tonic signaling is a low-level constitutive signaling occurring in both natural and engineered antigen receptors without antigen stimulation. It plays a pivotal role in regulating immune cell homeostasis, exhaustion, persistence, and effector functions.
The "Peak Theory" suggests an optimal level of tonic signaling for CAR-T function: while weak tonic signaling may result in poor proliferation and persistence, excessively strong signaling can cause T cell exhaustion. This review also summarizes the recent progress in mechanisms underlying the tonic signaling and strategies to fine-tune the CAR tonic signaling. By understanding and precisely modulating tonic signaling, the efficacy of CAR-T therapies can be further optimized, offering new avenues for treatment across a broader spectrum of diseases.
These findings have implications beyond CAR-T cells, potentially impacting other engineered immune cell therapies such as CAR-NK and CAR-M.
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