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利用衰老来增强抗肿瘤免疫以推进癌症治疗。

Harnessing Senescence for Antitumor Immunity to Advance Cancer Treatment.

出版信息

Radiat Res. 2024 Nov 1;202(5):727-733. doi: 10.1667/RADE-24-00098.1.

Abstract

Considering the limitations and complexities of the cell-killing-based cancer treatment approaches, one could aim to integrate symbiotic advances in many energy delivery technologies and transformational pieces of evidence in research on senescence and immunomodulators to advance cancer treatment. Although senescent cells contribute to drug tolerance, resistance to therapy, tumorigenesis, maladapting cancer phenotypes, tumor relapse, recurrence, and metastasis, emerging pieces of evidence also demonstrate that acutely induced senescent cells in tumors can elicit a strong and lasting antitumor immune response juxtaposed to the immunologically silent apoptotic cells. This commentary is to help develop an unconventional conceptual framework to advance cancer treatment. Accordingly, it will involve transiently inducing senescent cells in tumors at optimal levels to prime the immune system with radiation, then eliminating senescent cells with senolytics (drugs that specifically eliminate senescent cells) to disrupt their positive feedback accumulation (to prevent tumor maladaptation and adverse effects in healthy cells) and unleash long-lasting antitumor immunity with immunomodulators. The approach is reasonably speculative and will require scientifically rigorous "fit-for-purpose," well-controlled preclinical research and development involving dose and schedule optimization of radiation and drugs, using representative in vitro and in vivo cancer models to obtain high-quality data to proceed to clinical studies.

摘要

考虑到基于细胞杀伤的癌症治疗方法的局限性和复杂性,人们可以尝试整合许多能量传递技术的共生进展和衰老与免疫调节剂研究中的变革性证据,以推进癌症治疗。虽然衰老细胞有助于药物耐受、治疗耐药性、肿瘤发生、适应不良的癌症表型、肿瘤复发、再发和转移,但新出现的证据也表明,在肿瘤中急性诱导的衰老细胞可以引发强烈而持久的抗肿瘤免疫反应,与免疫沉默的凋亡细胞形成鲜明对比。本评论旨在帮助开发一种非常规的概念框架来推进癌症治疗。因此,它将涉及在最佳水平上在肿瘤中短暂诱导衰老细胞,用辐射使免疫系统获得先机,然后用衰老细胞清除剂(专门清除衰老细胞的药物)来破坏它们的正反馈积累(以防止肿瘤适应不良和健康细胞的不良影响),并用免疫调节剂释放持久的抗肿瘤免疫。这种方法具有一定的推测性,需要进行科学严谨的“针对性”、良好控制的临床前研究和开发,涉及辐射和药物的剂量和方案优化,使用有代表性的体外和体内癌症模型来获得高质量的数据,然后进行临床研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1d7/11620177/59bf5d96e805/nihms-2035107-f0001.jpg

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