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细胞疗法与双特异性衔接器:重新定义对抗检查点耐药的策略

英文原题:Cell Therapies and Bispecific Engagers: Redefining Strategies against Checkpoint Resistance.

PubMed 2026/04/15(内容时间) Clin Cancer Res Q1 · IF 10.9(JCR 2025)

研究概要

大多数实体瘤患者要么从未从免疫检查点抑制剂(ICI)中获益,要么在初始缓解后复发,这凸显了对额外疗法的需求。

中文摘要

大多数实体瘤患者要么从未从免疫检查点抑制剂(ICI)中获益,要么在初始缓解后复发,这凸显了对额外疗法的需求。临床和转化证据指向两种互补策略来克服ICI耐药:通过工程化T细胞受体(TCR)、嵌合抗原受体(CAR)和CD3/TCR衔接器赋予新的肿瘤特异性来重定向效应细胞,以及通过TIL(肿瘤浸润淋巴细胞)疗法、细胞因子支持和微环境重塑来增强内源性反应。本综述整合了各平台的新兴信号,并探讨了为何某些设计成功而另一些停滞不前。治疗效果取决于肿瘤靶点特征和周围微环境。当以下条件满足时,临床疗效正在显现:(i)肿瘤靶点表现出高密度和均一性,且局限于恶性细胞;(ii)抗原呈递可被用于基于TCR的策略,或可通过CAR和衔接器绕过;(iii)肿瘤微环境具有容许性,或可通过区域递送及基质、血管或髓系调节实现转化。工程化解决方案如调谐共刺激、细胞因子装甲和抗抑制性可改善效应细胞的扩增和持久性。安全且可扩展的递送需要暴露控制和制造与物流方面的运营解决方案。递增剂量和优化给药途径可限制峰值暴露和资源强度。自体制造和治疗等待时间仍是限制因素,而非现货平台改善了物流。对患者而言,近期进展将依赖于生物标志物指导的选择和务实试验,这些试验解决序贯治疗和桥接问题,同时对各模式的持久性进行基准评估。

展开英文摘要原文

Most patients with solid tumors either never benefit from immune checkpoint inhibitors (ICI) or relapse after an initial response, underscoring the need for additional therapies. Clinical and translational evidence points to two complementary strategies to overcome ICI resistance: redirection of effector cells by imposing novel tumor specificity via engineered T-cell receptors (TCR), chimeric antigen receptors (CAR), and CD3/TCR engagers and augmentation of endogenous responses by tumor-infiltrating lymphocyte therapy, cytokine support, and microenvironment remodeling. This review integrates emerging signals across platforms and examines why some designs succeed while others stall. Therapeutic efficacy depends on tumor target features and the surrounding microenvironment. Clinical efficacy is emerging when (i) tumor targets show high density and uniformity with restriction to malignant cells, (ii) antigen presentation can be harnessed for TCR-based strategies or bypassed with CARs and engagers, and (iii) the tumor contexture is permissive or convertible with regional delivery and stromal, vascular, or myeloid modulation. Engineering solutions such as tuned costimulation, cytokine armoring, and resistance to suppression improve effector expansion and persistence. Safe and scalable delivery requires exposure control and operational solutions in manufacturing and logistics. Step-up dosing and optimized routes can limit peak exposure and resource intensity. Autologous manufacturing and time to treatment remain limiting, whereas off-the-shelf platforms improve logistics. For patients, near-term progress will rely on biomarker-guided selection and pragmatic trials that address sequencing and bridging while benchmarking durability across modalities.

论文信息

作者
Läubli H、König D、Donia M、Binder M、Zippelius A
单位
Department of Biomedicine, University Hospital Basel, University of Basel, Basel, Switzerland.Switzerland
文献类型
综述
期刊
Clinical cancer research : an official journal of the American Association for Cancer Research2026 Apr 15
原文标识
PubMed 41661081 · DOI 10.1158/1078-0432.CCR-24-3694