RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Facts and Hopes in Radioimmunotherapy of Oligometastatic Disease.
Facts and Hopes in Radioimmunotherapy of Oligometastatic Disease.
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寡转移状态以转移播散有限为特征,挑战了转移性癌症即为广泛播散且不可治愈的观点。证据表明,部分转移灶局限的患者可通过局部治疗(如手术或立体定向体部放疗(SBRT))实现长期疾病控制甚至治愈。放疗对肿瘤微环境产生复杂的、剂量依赖性效应,包括释放免疫原性细胞因子和损伤相关分子模式、增强癌细胞上的抗原呈递,以及效应T细胞、NK细胞和巨噬细胞的浸润。这些免疫调节效应为将SBRT与免疫检查点抑制剂联合以增强局部和全身抗肿瘤免疫提供了有力依据。多项前瞻性I-II期试验已探讨了寡转移背景下放疗与免疫治疗的各种联合方案,显示出可接受的安全性特征和有前景的疗效信号。
然而,联合放免治疗所报告的临床结局在很大程度上参差不齐,这可能反映了SBRT剂量、治疗顺序、免疫治疗类型、患者选择和肿瘤特征方面的差异。
值得注意的是,采用对所有转移灶进行全面消融性SBRT的研究似乎更一致地显示出优于标准全身治疗的结局,而非次消融性或单病灶照射。推动寡转移性疾病放射免疫联合治疗的范式进步,需要基于临床、分子或影像学特征改进患者选择;严格优化放疗剂量分割,以最大化免疫启动同时最小化毒性;并与靶向互补免疫通路的新型免疫治疗药物进行合理整合。
The oligometastatic state, characterized by limited metastatic dissemination, challenges the view that metastatic cancer is widespread and incurable. Evidence suggests that select patients with restricted metastases may achieve long-term disease control or even cure with local therapies, such as surgery or stereotactic body radiotherapy (SBRT). Radiotherapy induces complex, dose-dependent effects on the tumor microenvironment, including the release of immunogenic cytokines and damage-associated molecular patterns, enhanced antigen presentation on cancer cells, and infiltration of effector T cells, NK cells, and macrophages.
These immunomodulatory effects provide a compelling basis for combining SBRT with immune checkpoint inhibitors to enhance local and systemic antitumor immunity. Several prospective phase I-II trials have investigated various combinations of radiotherapy and immunotherapy in the oligometastatic setting, demonstrating acceptable safety profiles and promising efficacy signals.
However, clinical outcomes reported with combined radioimmunotherapy have largely been mixed, which likely reflects variability in SBRT dosing, sequencing of therapy, type of immunotherapy, patient selection, and tumor characteristics.
Notably, studies employing comprehensive ablative SBRT to all metastatic sites seem to more consistently demonstrate superior outcomes over standard-of-care systemic therapy, as opposed to sub-ablative or single-lesion irradiation.
Advancing the therapeutic paradigm of radioimmunotherapy combinations for oligometastatic disease requires improved patient selection based on clinical, molecular, or radiographic features; rigorous optimization of radiotherapy dose fractionation to maximize immune priming while minimizing toxicities; and rational integration with novel immunotherapeutic agents that target complementary immune pathways.
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