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Dependence and independence of survival parameters on linear energy transfer in cells and tissues

机译:生存参数对细胞和组织中线性能量转移的依赖性和独立性

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摘要

Carbon-ion radiotherapy has been used to treat more than 9000 cancer patients in the world since 1994. Spreading of the Bragg peak is necessary for carbon-ion radiotherapy, and is designed based on the linear–quadratic model that is commonly used for photon therapy. Our recent analysis using in vitro cell kills and in vivo mouse tissue reaction indicates that radiation quality affects mainly the alpha terms, but much less the beta terms, which raises the question of whether this is true in other biological systems. Survival parameters alpha and beta for 45 in vitro mammalian cell lines were obtained by colony formation after irradiation with carbon ions, fast neutrons and X-rays. Relationships between survival parameters and linear energy transfer (LET) below 100 keV/μm were obtained for 4 mammalian cell lines. Mouse skin reaction and tumor growth delay were measured after fractionated irradiation. The Fe-plot provided survival parameters of the tissue reactions. A clear separation between X-rays and high-LET radiation was observed for alpha values, but not for beta values. Alpha values/terms increased with increasing LET in any cells and tissues studied, while beta did not show a systematic change. We have found a puzzle or contradiction in common interpretations of the linear-quadratic model that causes us to question whether the model is appropriate for interpreting biological effectiveness of high-LET radiation up to 500 keV/μm, probably because of inconsistency in the concept of damage interaction. A repair saturation model proposed here was good enough to fit cell kill efficiency by radiation of wide-ranged LET. A model incorporating damage complexity and repair saturation would be suitable for heavy-ion radiotherapy.
机译:自1994年以来,碳离子放射治疗已被用于治疗全球9000多名癌症患者。布拉格峰的扩散对于碳离子放射治疗是必要的,并且是基于通常用于光子治疗的线性二次模型设计的。我们最近使用体外细胞杀伤和体内小鼠组织反应进行的分析表明,辐射质量主要影响α项,但对β项影响较小,这引发了在其他生物系统中是否如此的问题。通过用碳离子,快中子和X射线照射后的集落形成,获得了45种体外哺乳动物细胞系的存活参数alpha和beta。对于4种哺乳动物细胞系,获得了存活参数与低于100keV /μm的线性能量转移(LET)之间的关系。分次照射后测量小鼠皮肤反应和肿瘤生长延迟。 Fe图提供了组织反应的存活参数。对于α值,观察到X射线和高LET辐射之间的清晰分离,但对于β值则没有观察到。在所研究的任何细胞和组织中,α值/项均随着LET的增加而增加,而beta并未显示出系统的变化。在线性二次模型的常见解释中,我们发现了一个难题或矛盾之处,这使我们质疑该模型是否适合解释高达500 keV /μm的高LET辐射的生物有效性,这可能是由于破坏相互作用。这里提出的修复饱和度模型足以适应大范围LET辐射的细胞杀伤效率。包含损伤复杂度和修复饱和度的模型将适用于重离子放射治疗。

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