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肿瘤微环境在介导放射性药物治疗中的作用:连接核医学与肿瘤免疫治疗

英文原题:The role of the tumor microenvironment in mediating radiopharmaceutical therapy: bridging nuclear medicine and cancer immunotherapy.

查看英文原题

The role of the tumor microenvironment in mediating radiopharmaceutical therapy: bridging nuclear medicine and cancer immunotherapy.

PubMed 2026/05/19(内容时间) Mil Med Res Q1 · IF 29(JCR 2025)

研究概要

TME 是 RPT 与免疫治疗之间的关键桥梁;阐明这三者之间的相互作用对于推进联合策略至关重要。

中文摘要

放射性药物治疗(RPT)是癌症治疗的重要方式,其疗效受到肿瘤微环境(TME)的显著调节。TME调控RPT的组织穿透,并影响治疗结局;同时,RPT也会主动重塑TME,增强免疫活化并部分逆转免疫抑制。具体而言,RPT可诱导肿瘤细胞衰老和免疫原性细胞死亡,并促进免疫激活。RPT可减少调节性T细胞和肿瘤相关巨噬细胞等免疫抑制成分,并增加CD8 T细胞和NK 细胞群体,从而形成更具免疫刺激性的TME。此外,RPT还能调节关键细胞因子并上调免疫检查点分子,增强抗肿瘤免疫。然而,TME中的缺氧和细胞外基质僵硬等病理特征可能妨碍RPT的生物分布和治疗效果。通过成纤维细胞清除、缓解缺氧、代谢重编程、神经-免疫-癌细胞相互作用调节或纳米载体递送药物等策略靶向TME,可增强RPT疗效。将RPT与免疫检查点抑制剂、嵌合抗原受体(CAR)T细胞或癌症疫苗整合的联合免疫疗法,在前列腺癌和神经内分泌肿瘤等恶性肿瘤中显示出更强抗肿瘤应答和生存获益。鉴于TME复杂且异质,辐射响应型纳米载体、经工程化改造以分泌放射增敏剂的CAR-T细胞、衰老细胞清除疗法及人工智能驱动的多模态数据整合等新兴策略,有望应对挑战并优化精准癌症治疗。总之,TME是连接RPT与免疫治疗的关键桥梁;阐明这三者之间的相互作用对于推进联合治疗策略至关重要。

展开英文摘要原文

Radiopharmaceutical therapy (RPT) is a pivotal modality in cancer treatment, with its efficacy substantially modulated by the tumor microenvironment (TME). The TME regulates RPT penetration and influences therapeutic outcomes. Concurrently, RPT actively reconfigures the TME by enhancing immune activation and partially reversing immunosuppression. Specifically, RPT induces tumor cell senescence and immunogenic cell death, and catalyzes immune activation. RPT diminishes immunosuppressive elements, including regulatory T cells and tumor-associated macrophages, and augments populations of CD8 T cells and natural killer cells, thereby fostering a more immunostimulatory TME. Additionally, RPT modulates critical cytokines and upregulates immune checkpoint molecules, bolstering anti-tumor immunity. Nevertheless, pathological features like hypoxia and extracellular matrix stiffness within the TME can hinder RPT biodistribution and therapeutic efficacy. Strategically targeting the TME through approaches, such as fibroblast depletion, hypoxia mitigation, metabolic reprogramming, nerve-immune-cancer interactions, or nanocarrier drug delivery, can amplify RPT effectiveness. Combination immunotherapies that integrate RPT with immune checkpoint inhibitors, chimeric antigen receptor (CAR)-T cells, or cancer vaccines have demonstrated enhanced anti-tumor responses and survival advantages in malignancies such as prostate cancer and neuroendocrine tumors. Given the complexity and heterogeneity of the TME, emerging strategies, including radiation-responsive nanocarriers, CAR-T cells engineered to secrete radiosensitizers, senolytic therapies, and artificial intelligence-driven multimodal data integration, are promising in addressing the challenges and refining precision cancer therapy. In summary, the TME serves as a critical bridge between RPT and immunotherapy; elucidating the interplay among these three elements is essential for advancing combination strategies.

论文信息

作者
Wang ZP、Li AQ、Wusiman D、Wu RC、Zhu JM、Li XR、Guo YN、Chaipanichkul P
第一作者单位
Department of Urology, Sichuan Provincial People's Hospital, University of Electronic Science and Technology of China, Chengdu 610072, China.China
通讯作者单位
Division of Surgery & Interventional Science, University College London, London W1W 7TS, UK.United Kingdom
文献类型
综述
期刊
Military Medical Research2026
原文标识
PubMed 42211735 · DOI 10.1016/j.mmr.2026.100038