Ma Yuqi, Zhang Wenkang, Zhao Ziming, Lv Jianfeng, Chen Junyi, Yan Xueqin, Lin XiaoJi, Zhang Junlong, Wang Bingwu, Gao Song, Xiao Jie, Yang Gen
State Key Laboratory of Nuclear Physics and Technology, School of Physics, Peking University, Beijing 100871, China.
Oncology Discipline Group, the Second Affiliated Hospital of Wenzhou Medical University, Wenzhou 325003, China.
Natl Sci Rev. 2024 Sep 30;11(10):nwae350. doi: 10.1093/nsr/nwae350. eCollection 2024 Oct.
FLASH radiotherapy (FLASH-RT) is a new modality of radiotherapy that delivers doses with ultra-high dose rates. The FLASH effect was defined as the ability of FLASH-RT to suppress tumor growth while sparing normal tissues. Although the FLASH effect has been proven to be valid in various models by different modalities of irradiation and clinical trials of FLASH-RT have achieved promising initial success, the exact underlying mechanism is still unclear. This article summarizes mainstream hypotheses of the FLASH effect at physicochemical and biological levels, including oxygen depletion and free radical reactions, nuclear and mitochondria damage, as well as immune response. These hypotheses contribute reasonable explanations to the FLASH effect and are interconnected according to the chronological order of the organism's response to ionizing radiation. By collating the existing consensus, evidence and hypotheses, this article provides a comprehensive overview of potential mechanisms of the FLASH effect and practical guidance for future investigation in the field of FLASH-RT.
闪速放疗(FLASH-RT)是一种新的放射治疗方式,它以超高剂量率输送剂量。闪速效应被定义为FLASH-RT在保护正常组织的同时抑制肿瘤生长的能力。尽管闪速效应已在各种模型中通过不同的照射方式得到证实,并且FLASH-RT的临床试验也取得了令人鼓舞的初步成功,但其确切的潜在机制仍不清楚。本文总结了在物理化学和生物学层面上关于闪速效应的主流假说,包括氧耗竭和自由基反应、细胞核和线粒体损伤以及免疫反应。这些假说为闪速效应提供了合理的解释,并根据生物体对电离辐射的反应时间顺序相互关联。通过整理现有的共识、证据和假说,本文全面概述了闪速效应的潜在机制,并为FLASH-RT领域的未来研究提供了实际指导。