Li Heng
Department of Radiation Oncology and Molecular Radiation Sciences, Johns Hopkins University, Baltimore, MD, United States.
Front Oncol. 2022 Jun 29;12:847090. doi: 10.3389/fonc.2022.847090. eCollection 2022.
Despite numerous ion beam irradiation of cell experiments performed over the past five decades, the relationship between the biological effectiveness of ion beams and the physical characteristics of the ion beam remains unclear. Using 1,118 sets of cell survival experiments with ion beam irradiation, compiled by the Particle Irradiation Data Ensemble (PIDE) project, the relationship between cell survival and the fluence and linear energy transfer (LET) of the ion beam was established. Unlike previous studies, the closed-form analytical function is independent of photon irradiation and takes a universal form across all ion and cell species. A new understanding of the biological effectiveness of ion beams is crucial for predicting tumor response and toxicities in ion beam radiation therapy, along with radiation protection for high-LET ion beams with low fluence.
尽管在过去五十年里进行了大量的离子束辐照细胞实验,但离子束的生物学效应与离子束物理特性之间的关系仍不清楚。利用粒子辐照数据集成(PIDE)项目汇编的1118组离子束辐照细胞存活实验,建立了细胞存活与离子束注量和线能量转移(LET)之间的关系。与以往研究不同,该封闭形式的解析函数与光子辐照无关,并且对所有离子和细胞种类都具有通用形式。对离子束生物学效应的新理解对于预测离子束放射治疗中的肿瘤反应和毒性以及低注量高LET离子束的辐射防护至关重要。