CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Emerging immunologic approaches as cancer anti-angiogenic therapies.
Emerging immunologic approaches as cancer anti-angiogenic therapies.
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靶向肿瘤血管生成,即支持癌症生长和扩散的新血管形成,一直是治疗开发的热点。然而,贝伐珠单抗等抗血管生成药物的获益受到代偿性通路激活所导致的耐药性的限制。近期免疫治疗的进展激发了人们对新型免疫学方法的兴趣,这些方法能够诱导更持久的血管修剪并克服现有血管生成抑制剂的局限性。本综述全面审视了这些新兴策略,包括调节肿瘤相关巨噬细胞、治疗性癌症疫苗、工程化纳米抗体和T细胞、抗血管生成细胞因子/趋化因子,以及沙利度胺类似物等免疫调节药物。针对每种方法,讨论了其分子机制、临床前/临床数据以及相对于传统药物的潜在优势。探索了纳米颗粒递送系统等创新治疗平台。此外,评估了将具有不同机制的药物联合使用以预防耐药性的重要性。由于肿瘤劫持血管生成以促进生长,利用免疫系统的特异性来破坏这一过程代表了一种有前景的抗癌策略,本综述对此进行了涵盖。
Targeting tumor angiogenesis, the formation of new blood vessels supporting cancer growth and spread, has been an intense focus for therapy development.
However, benefits from anti-angiogenic drugs like bevacizumab have been limited by resistance stemming from activation of compensatory pathways. Recent immunotherapy advances have sparked interest in novel immunologic approaches that can induce more durable vascular pruning and overcome limitations of existing angiogenesis inhibitors.
This review comprehensively examines these emerging strategies, including modulating tumor-associated macrophages, therapeutic cancer vaccines, engineered nanobodies and T cells, anti-angiogenic cytokines/chemokines, and immunomodulatory drugs like thalidomide analogs. For each approach, the molecular mechanisms, preclinical/clinical data, and potential advantages over conventional drugs are discussed. Innovative therapeutic platforms like nanoparticle delivery systems are explored.
Moreover, the importance of combining agents with distinct mechanisms to prevent resistance is evaluated. As tumors hijack angiogenesis for growth, harnessing the immune system's specificity to disrupt this process represents a promising anti-cancer strategy covered by this review.
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