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:Mechanisms and Emerging Strategies to Overcome Immunotherapy Resistance in Cold Tumours of Colorectal Cancer.
Mechanisms and Emerging Strategies to Overcome Immunotherapy Resistance in Cold Tumours of Colorectal Cancer.
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结直肠癌(CRC)的免疫治疗呈现出鲜明的两极分化。MSS/pMMR肿瘤约占转移性CRC病例的95%,构成了巨大的全球健康负担。尽管免疫检查点抑制剂(ICIs)已彻底改变了错配修复缺陷/微卫星高度不稳定(dMMR/MSI-H)转移性CRC的治疗——在具有高突变负荷和T细胞浸润微环境的肿瘤中实现了持久缓解——但大多数微卫星稳定(MSS)病例仍然耐药。MSS肿瘤微环境通常呈“冷”状态,表现为新抗原负荷低、T细胞浸润差以及免疫抑制网络占主导。为克服这种耐药性,大量研究聚焦于联合策略(ICIs联合抗血管生成药物、靶向治疗、化疗、放疗)和下一代治疗模式(过继性细胞疗法、双特异性抗体、癌症疫苗)。本综述探讨了这种两极分化的生物学基础,总结了dMMR/MSI-H CRC的临床证据,并批判性评估了针对MSS疾病的新兴策略。
我们提出,未来的进展可能取决于基于机制、由生物标志物驱动的方法,即将特定的免疫逃逸模式与合理设计的干预措施相匹配,目标是将免疫治疗的获益扩展至更广泛的CRC人群。本叙述性综述综合了来自PubMed和临床试验注册库(2015-2025年)的同行评审文献,优先纳入II/III期试验和机制研究。
Immunotherapy in colorectal cancer (CRC) presents a striking dichotomy. MSS/pMMR tumors account for approximately 95% of metastatic CRC cases, representing a substantial global health burden. While immune checkpoint inhibitors (ICIs) have revolutionized treatment for mismatch repair-deficient/microsatellite instability-high (dMMR/MSI-H) metastatic CRC-achieving durable responses in tumors with high mutational burden and a T-cell-inflamed microenvironment-the majority of microsatellite stable (MSS) cases remain resistant.
The MSS tumor microenvironment is typically "cold", featuring low neoantigen load, poor T-cell infiltration, and dominant immunosuppressive networks. To overcome this resistance, extensive research is focused on combination strategies (ICIs with anti-angiogenic agents, targeted therapies, chemotherapy, radiotherapy) and next-generation modalities (adoptive cell therapies, bispecific antibodies, cancer vaccines).
This review examines the biological basis for this dichotomy, summarizes clinical evidence in dMMR/MSI-H CRC, and critically assesses emerging strategies for MSS disease.
We propose that future progress will likely depend on mechanism-based, biomarker-driven approaches that match specific immune evasion patterns with rationally designed interventions, with the goal of extending immunotherapy benefits to broader CRC populations. This narrative review synthesizes peer-reviewed literature from PubMed and clinical trial registries (2015-2025), prioritizing Phase II/III trials and mechanistic studies.
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