New Approaches in Radiotherapy.

IF 4.5 2区 医学 Q1 ONCOLOGY
Cancers Pub Date : 2025-06-13 DOI:10.3390/cancers17121980
Matthew Webster, Alexander Podgorsak, Fiona Li, Yuwei Zhou, Hyunuk Jung, Jihyung Yoon, Olga Dona Lemus, Dandan Zheng
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引用次数: 0

Abstract

Radiotherapy (RT) has undergone transformative advancements since its inception over a century ago. This review highlights the most promising and impactful innovations shaping the current and future landscape of RT. Key technological advances include adaptive radiotherapy (ART), which tailors treatment to daily anatomical changes using integrated imaging and artificial intelligence (AI), and advanced image guidance systems, such as MR-LINACs, PET-LINACs, and surface-guided radiotherapy (SGRT), which enhance targeting precision and minimize collateral damage. AI and data science further support RT through automation, improved segmentation, dose prediction, and treatment planning. Emerging biological and targeted therapies, including boron neutron capture therapy (BNCT), radioimmunotherapy, and theranostics, represent the convergence of molecular targeting and radiotherapy, offering personalized treatment strategies. Particle therapies, notably proton and heavy ion RT, exploit the Bragg peak for precise tumor targeting while reducing normal tissue exposure. FLASH RT, delivering ultra-high dose rates, demonstrates promise in sparing normal tissue while maintaining tumor control, though clinical validation is ongoing. Spatially fractionated RT (SFRT), stereotactic techniques and brachytherapy are evolving to treat challenging tumor types with enhanced conformality and efficacy. Innovations such as 3D printing, Auger therapy, and hyperthermia are also contributing to individualized and site-specific solutions. Across these modalities, the integration of imaging, AI, and novel physics and biology-driven approaches is redefining the possibilities of cancer treatment. This review underscores the multidisciplinary and translational nature of modern RT, where physics, engineering, biology, and informatics intersect to improve patient outcomes. While many approaches are in various stages of clinical adoption and investigation, their collective impact promises to redefine the therapeutic boundaries of radiation oncology in the coming decade.

放射治疗的新途径
放射治疗(RT)自一个多世纪前诞生以来,经历了变革性的进步。本综述重点介绍了塑造当前和未来放射治疗前景的最具前景和影响力的创新。关键技术进步包括自适应放射治疗(ART),它利用集成成像和人工智能(AI)根据日常解剖变化量身定制治疗,以及先进的图像引导系统,如MR-LINACs、PET-LINACs和表面引导放射治疗(SGRT),它们提高了靶向精度并最大限度地减少了附带损伤。人工智能和数据科学通过自动化、改进的分割、剂量预测和治疗计划进一步支持RT。新兴的生物和靶向治疗,包括硼中子捕获治疗(BNCT)、放射免疫治疗和治疗学,代表了分子靶向和放疗的融合,提供了个性化的治疗策略。粒子疗法,特别是质子和重离子RT,利用布拉格峰精确靶向肿瘤,同时减少正常组织暴露。尽管临床验证仍在进行中,但提供超高剂量率的FLASH RT在保留正常组织的同时保持肿瘤控制方面表现出了希望。空间分步放射治疗(SFRT)、立体定向技术和近距离治疗正在发展,以提高治疗的一致性和有效性。3D打印、俄钻治疗和热疗等创新技术也有助于个性化和特定部位的解决方案。在这些模式中,影像、人工智能以及新的物理和生物学驱动方法的整合正在重新定义癌症治疗的可能性。这篇综述强调了现代RT的多学科和转化性质,其中物理,工程,生物学和信息学交叉以改善患者的预后。虽然许多方法处于临床采用和研究的不同阶段,但它们的共同影响有望在未来十年重新定义放射肿瘤学的治疗界限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cancers
Cancers Medicine-Oncology
CiteScore
8.00
自引率
9.60%
发文量
5371
审稿时长
18.07 days
期刊介绍: Cancers (ISSN 2072-6694) is an international, peer-reviewed open access journal on oncology. It publishes reviews, regular research papers and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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