Radiation Medicine Program, Princess Margaret Cancer Centre, University Health Network, Toronto, ON M5G 1X6, Canada.
Department of Radiation Oncology, University of Toronto, Toronto, ON M5T 1P5, Canada.
Cells. 2024 May 14;13(10):835. doi: 10.3390/cells13100835.
The advent of FLASH radiotherapy (FLASH-RT) has brought forth a paradigm shift in cancer treatment, showcasing remarkable normal cell sparing effects with ultra-high dose rates (>40 Gy/s). This review delves into the multifaceted mechanisms underpinning the efficacy of FLASH effect, examining both physicochemical and biological hypotheses in cell biophysics. The physicochemical process encompasses oxygen depletion, reactive oxygen species, and free radical recombination. In parallel, the biological process explores the FLASH effect on the immune system and on blood vessels in treatment sites such as the brain, lung, gastrointestinal tract, skin, and subcutaneous tissue. This review investigated the selective targeting of cancer cells and the modulation of the tumor microenvironment through FLASH-RT. Examining these mechanisms, we explore the implications and challenges of integrating FLASH-RT into cancer treatment. The potential to spare normal cells, boost the immune response, and modify the tumor vasculature offers new therapeutic strategies. Despite progress in understanding FLASH-RT, this review highlights knowledge gaps, emphasizing the need for further research to optimize its clinical applications. The synthesis of physicochemical and biological insights serves as a comprehensive resource for cell biology, molecular biology, and biophysics researchers and clinicians navigating the evolution of FLASH-RT in cancer therapy.
FLASH 放射治疗(FLASH-RT)的出现带来了癌症治疗的范式转变,展示了超高剂量率(>40Gy/s)下非凡的正常细胞保护效应。本综述深入探讨了 FLASH 效应的多方面机制,从细胞生物物理的角度检验了物理化学和生物学假说。物理化学过程包括氧耗竭、活性氧和自由基重组。同时,生物学过程探讨了 FLASH 效应对治疗部位(如大脑、肺、胃肠道、皮肤和皮下组织)的免疫系统和血管的影响。本综述研究了通过 FLASH-RT 对癌细胞的选择性靶向和肿瘤微环境的调节。通过研究这些机制,我们探讨了将 FLASH-RT 整合到癌症治疗中的意义和挑战。保护正常细胞、增强免疫反应和改变肿瘤血管的潜力提供了新的治疗策略。尽管对 FLASH-RT 的理解取得了进展,但本综述强调了需要进一步研究以优化其临床应用,突出了知识空白。物理化学和生物学见解的综合为细胞生物学、分子生物学和生物物理学研究人员以及在癌症治疗中探索 FLASH-RT 演变的临床医生提供了全面的资源。