Particle Beam Radiobiology Status and Challenges: A PTCOG Radiobiology Subcommittee Report
Современное состояние и проблемы радиобиологии пучков частиц: доклад подкомитета PTCOG по радиобиологии
2024-08-08
SCID: 54.1/6pctb62a
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linear energy transfermultimodal radiation therapyparticle beam radiobiologyparticle therapyrelative biological effectiveness
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Abstract (AI)
Particle therapy (PT) represents a significant advancement in cancer treatment, precisely targeting tumor cells while sparing surrounding healthy tissues thanks to the unique depth-dose profiles of the charged particles. Furthermore, their linear energy transfer and relative biological effectiveness enhance their capability to treat radioresistant tumors, including hypoxic ones. Over the years, extensive research has paved the way for PT's clinical application, and current efforts aim to refine its efficacy and precision, minimizing the toxicities. In this regard, radiobiology research is evolving toward integrating biotechnology to advance drug discovery and radiation therapy optimization. This shift from basic radiobiology to understanding the molecular mechanisms of PT aims to expand the therapeutic window through innovative dose delivery regimens and combined therapy approaches. This review, written by over 30 contributors from various countries, provides a comprehensive look at key research areas and new developments in PT radiobiology, emphasizing the innovations and techniques transforming the field, ranging from the radiobiology of new irradiation modalities to multimodal radiation therapy and modeling efforts. We highlight both advancements and knowledge gaps, with the aim of improving the understanding and application of PT in oncology.
Key Findings
1
Innovative dose-delivery regimens and combination therapies aim to widen the therapeutic window and reduce treatment toxicities.
2
Particle linear energy transfer and relative biological effectiveness support treatment of radioresistant tumors, including hypoxic tumors.
3
Particle therapy precisely targets tumors while sparing surrounding healthy tissues through the distinctive depth-dose profiles of charged particles.
4
Radiobiology research is shifting from basic biological characterization toward molecular understanding, biotechnology integration, and optimization of particle therapy.
5
The review surveys advances, emerging techniques, and knowledge gaps spanning new irradiation modalities, multimodal radiation therapy, and modeling.
Research Object
particle therapy in oncology, including charged-particle irradiation modalities and their biological interactions with tumors and normal tissues
Research Subject
radiobiological mechanisms, therapeutic efficacy, toxicity, and optimization of dose delivery and combined treatments in particle therapy
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2024-08-08
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