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FLASH放疗:连接癌症治疗中的革命性机制与临床前沿——一篇叙述性综述

FLASH radiotherapy: bridging revolutionary mechanisms and clinical frontiers in cancer treatment - a narrative review.

作者信息

Kim Jae Sik, Kim Hak Jae

机构信息

Department of Radiation Oncology, Soonchunhyang University Seoul Hospital, Soonchunhyang University College of Medicine, Seoul, Korea.

Department of Radiation Oncology, Seoul National University Hospital, Seoul National University College of Medicine, Seoul, Korea.

出版信息

Ewha Med J. 2024 Oct;47(4):e54. doi: 10.12771/emj.2024.e54. Epub 2024 Oct 31.

Abstract

FLASH radiotherapy (FLASH-RT) is an innovative approach that delivers ultra-high dose rates exceeding 40 Gy in less than a second, aiming to widen the therapeutic window by minimizing damage to normal tissue while maintaining tumor control. This review explores the advancements, mechanisms, and clinical applications of FLASH-RT across various radiation sources. Electrons have been predominantly used due to technical feasibility, but their limited penetration depth restricts clinical application. Protons, offering deeper tissue penetration, are considered promising for treating deep-seated tumors despite challenges in beam delivery. Preclinical studies demonstrate that FLASH-RT reduces normal tissue toxicity in the lung, brain, skin, intestine, and heart without compromising antitumor efficacy. The mechanisms underlying the FLASH effect may involve oxygen depletion leading to transient hypoxia, reduced DNA damage in normal tissues, and modulation of immune and inflammatory responses. However, these mechanisms are incompletely understood, and inconsistent results across studies highlight the need for further research. Initial clinical studies, including treatment of cutaneous lymphoma and bone metastases, indicate the feasibility and potential benefits of FLASH-RT in patients. Challenges for clinical implementation include technical issues in dosimetry accuracy at ultra-high dose rates, adaptations in treatment planning systems, beam delivery methods, and economic considerations due to specialized equipment requirements. Future directions will involve comprehensive preclinical studies to optimize irradiation parameters, large-scale clinical trials to establish standardized protocols, and technological advancements to overcome limitations. FLASH-RT holds the potential to revolutionize radiotherapy by reducing normal tissue toxicity and improving therapeutic outcomes, but significant research is required for real-world clinical applications.

摘要

闪疗(FLASH放疗,FLASH-RT)是一种创新方法,能在不到一秒的时间内提供超过40 Gy的超高剂量率,旨在通过在维持肿瘤控制的同时将对正常组织的损伤降至最低来扩大治疗窗口。本综述探讨了FLASH-RT在各种辐射源中的进展、机制和临床应用。由于技术可行性,电子一直是主要使用的辐射源,但其穿透深度有限限制了临床应用。质子具有更深的组织穿透能力,尽管在束流输送方面存在挑战,但被认为在治疗深部肿瘤方面很有前景。临床前研究表明,FLASH-RT可降低肺、脑、皮肤、肠道和心脏的正常组织毒性,而不影响抗肿瘤疗效。FLASH效应的潜在机制可能包括导致短暂缺氧的氧耗竭、正常组织中DNA损伤的减少以及免疫和炎症反应的调节。然而,这些机制尚未完全了解,各研究结果不一致凸显了进一步研究的必要性。初步临床研究,包括皮肤淋巴瘤和骨转移瘤的治疗,表明FLASH-RT对患者具有可行性和潜在益处。临床实施面临的挑战包括超高剂量率下剂量测定准确性的技术问题、治疗计划系统的调整、束流输送方法以及由于专用设备要求而产生的经济考虑。未来的方向将包括进行全面的临床前研究以优化照射参数、开展大规模临床试验以建立标准化方案以及进行技术进步以克服局限性。FLASH-RT有潜力通过降低正常组织毒性和改善治疗效果来彻底改变放射治疗,但在实际临床应用中还需要大量研究。

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