CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Mechanism and Therapeutic Potential of Viral Mimicry in Cancer Immunotherapy.
Mechanism and Therapeutic Potential of Viral Mimicry in Cancer Immunotherapy.
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癌症免疫治疗通过利用免疫系统识别和清除恶性细胞,改变了肿瘤学格局。然而,由于抗原呈递不足和干扰素(IFN)信号传导受损,许多癌症对这类治疗表现出有限或可变的反应,从而形成免疫学上“冷”的肿瘤微环境(TME),其特征为免疫细胞浸润不良和治疗耐药。病毒模拟作为一种治疗策略出现,通过重新激活肿瘤细胞内的先天抗病毒通路来克服这些局限。病毒模拟通过重新激活内源性逆转录病毒(ERVs)和其他逆转录转座子(如 LINE-1)而发生,随后刺激下游核酸感知通路。由此产生的 I/III 型 IFN 反应恢复抗原呈递并吸引细胞毒性免疫细胞,使耐药肿瘤对免疫治疗敏感。
然而,这些通路的全身性刺激可引发情境依赖性炎症和适应性耐药,凸显了时间和空间控制的必要性。在这篇综述中,我们探讨病毒模拟的机制基础和临床轨迹,重点强调其与已有治疗和工程化免疫细胞平台整合的潜力。通过识别分子和临床空白,病毒模拟可被用于增强肿瘤特异性免疫激活并克服癌症免疫治疗中的治疗耐药。
Cancer immunotherapy has transformed oncology by harnessing the immune system to recognize and eliminate malignant cells.
However, many cancers exhibit limited or variable responses to this class of treatment due to insufficient antigen presentation and impaired interferon (IFN) signaling, creating an immunologically "cold" tumor microenvironment (TME) characterized by poor immune cell infiltration and treatment resistance. Viral mimicry has emerged as a therapeutic strategy to overcome these limitations by reactivating innate antiviral pathways within tumor cells.
Viral mimicry occurs through the reactivation of endogenous retroviruses (ERVs) and other retrotransposons (e. g. , LINE-1), which subsequently stimulate downstream nucleic acid sensing pathways. The resulting type I/III IFN responses restore antigen presentation and attract cytotoxic immune cells, sensitizing resistant tumors to immunotherapy.
However, systemic stimulation of these pathways can trigger context-dependent inflammation and adaptive resistance, highlighting the need for temporal and spatial control. In this review, we examine the mechanistic foundation and clinical trajectory of viral mimicry, with an emphasis on its potential integration with established treatments and engineered immune cell platforms.
By identifying the molecular and clinical gaps, viral mimicry can be harnessed to enhance tumor-specific immune activation and overcome treatment resistance in cancer immunotherapy.
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