CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Transforming the "cold" tumors to "hot" tumors: strategies for immune activation.
Transforming the "cold" tumors to "hot" tumors: strategies for immune activation.
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免疫治疗已成为肿瘤学中一种范式转变的方法;然而,其疗效仍受限于TME的固有异质性。根据TILs的密度和功能状态,肿瘤被分类为“冷”或“热”,这一分类是治疗反应的关键决定因素。“冷”肿瘤的特征是免疫原性降低、抗原呈递受损和TIL浸润有限,通常表现出免疫逃逸和对免疫治疗反应不佳。相比之下,“热”肿瘤表现出强大的免疫细胞浸润和对免疫治疗药物增强的敏感性。本综述系统性地探讨了TME中免疫抑制的分子机制,特别强调针对免疫抑制性细胞成分的治疗策略以及增强免疫细胞活化的方法。通过将免疫学上的“冷”肿瘤转化为“热”表型,这些干预措施旨在增强抗肿瘤免疫反应。
我们评估了创新的治疗模式,包括OVs、cGAS-STING通路激动剂的激活以及功能化NPs,这些在重塑肿瘤免疫格局方面显示出潜力。
此外,我们批判性地评估了当前单一治疗方法的局限性,并提出了整合多种治疗模式的新型联合策略,以克服耐药机制并优化治疗结果。本综述不仅为开发针对“冷”肿瘤的治疗策略建立了全面的理论框架,还为癌症免疫治疗中联合治疗的未来发展提供了关键见解。
Immunotherapy has emerged as a paradigm-shifting approach in oncology; however, its efficacy remains limited by the inherent heterogeneity of TME. Tumors are classified as "cold" or "hot" based on the density and functional status of TILs, with this classification serving as a critical determinant of therapeutic response. "Cold" tumors, characterized by reduced immunogenicity, impaired antigen presentation, and limited TIL infiltration, typically exhibit immune evasion and poor responsivenes to immunotherapy.
In contrast, "hot" tumors demonstrate robust immune cell infiltration and enhanced sensitivity to immunotherapeutic agents. This review systematically examines the molecular mechanisms underlying immunosuppression in the TME, with particular emphasis on therapeutic strategies targeting immunosuppressive cellular components and approaches to enhance immune cell activation. Through the conversion of immunologically "cold" tumors to "hot" phenotypes, these interventions aim to potentiate anti-tumor immune responses.
We evaluate innovative therapeutic modalities, including OVs, activation of the cGAS-STING pathway agonist, and functionalized NPs, which demonstrate potential in reshaping the tumor immune landscape.
Furthermore, we critically assess the limitations of current monotherapeutic approaches and propose novel combinatorial strategies that integrate multiple therapeutic modalities to overcome resistance mechanisms and optimize treatment outcomes. This review not only establishes a comprehensive theoretical framework for developing therapeutic strategies targeting "cold" tumors but also provides critical insights into the future evolution of combination therapies in cancer immunotherapy.
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