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:Adenosine receptors on the immuno-oncology expressway: TIME, perspectives, and translation.
Adenosine receptors on the immuno-oncology expressway: TIME, perspectives, and translation.
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免疫检查点抑制剂进入肿瘤临床治疗已十年,理解患者治疗应答异质性已成为重要研究重点。临床数据揭示了逃逸初始治疗压力的原发和继发耐药机制。除PD-1和CTLA-4外,能够规避治疗压力的新检查点也在临床开发中。腺苷能通路积极参与致癌信号传导。关键分子CD73、A2AR和A2BR分布于淋巴系和髓系的多种免疫细胞亚群,已成为替代性检查点。本综述讨论腺苷受体信号免疫调节动态的最新进展,以及其在异质性肿瘤免疫微环境(TIME)中与缺氧的复杂相互作用。
我们还综述A2AR和A2BR的可塑性如何影响新药候选物设计,并追溯其通过复杂代谢机制诱导免疫功能障碍。除现有治疗模式外,ENT1和MTAP缺失—MTA轴也提供了其他干预可能。CD39-CD73-A2AR轴在T细胞终末耗竭中发挥核心作用。
我们重点介绍破坏A2AR机制背景及其与其他抑制因子协同作用的干预措施,旨在通过抑制其多层信号恢复抗肿瘤免疫功能。文章还汇总正在进行的临床试验、预测性生物标志物研究和新型递送方法,展示该领域的演进趋势。基于这些认识,我们讨论腺苷轴如何拓宽新的治疗途径并提高CAR-T 疗效;治疗性癌症疫苗则是这一思路中的新型治疗形式。
最后,对该通路及TIME动态的综合综述展示了在临床试验中联合腺苷信号抑制剂所面临的障碍和机遇。
A decade since immune checkpoint inhibitors made a stride in the clinical landscape of oncology, there has been a substantial focus on understanding the response heterogeneity following these therapies. Insights gained from clinical data identified the primary and secondary resistance mechanisms that escape the upfront therapy pressure. Beyond PD-1 and CTLA-4, new checkpoints averting this pressure are under clinical development. Adenosinergic pathways are actively engaged in oncogenic signaling. The main protagonists, CD73, A2AR, and A2BR, span diverse immune subsets of lymphoid and myeloid lineages and have emerged as alternative checkpoints.
This review discusses the latest update on immune regulation dynamics of adenosine receptor signaling and their complex interplay with hypoxia in a heterogeneous tumor immune microenvironment (TIME). In this spectrum, we also review the plasticity of A2AR and A2BR in designing new drug candidates, tracing their complex metabolic roots in inducing immune dysfunction. Beyond the existing modalities, the ENT1 and MTAP-loss-MTA axis shows scope for alternative perturbations. The CD39-CD73-A2AR axis plays a central role in the terminal exhaustion of T cells.
We highlight the interventions that disrupt the mechanistic context of A2AR and its cooperativity with other suppressors to restore anti-tumor immune functions following inhibition of their multilayered signaling.
We capture the ongoing clinical trials and predictive biomarker landscape, along with novel delivery methods, to illustrate the evolving trends in this field. From these perspectives, we discuss how the adenosine axis can widen this new therapeutic avenue and boost the efficacy of CAR-T therapies. Therapeutic cancer vaccines are a new modality in this premise.
Finally, an integrated overview of this pathway, along with TIME dynamics, illustrates the barriers and opportunities of combining adenosine signaling inhibitors in clinical trials.
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