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Using State Variables to Model the Response of Tumour Cells to Radiation and Heat: A Novel Multi-Hit-Repair Approach

机译:使用状态变量来建模肿瘤细胞对辐射和热量的响应:一种新型的多点修复方法

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摘要

In order to overcome the limitations of the linear-quadratic model and include synergistic effects of heat and radiation, a novel radiobiological model is proposed. The model is based on a chain of cell populations which are characterized by the number of radiation induced damages (hits). Cells can shift downward along the chain by collecting hits and upward by a repair process. The repair process is governed by a repair probability which depends upon state variables used for a simplistic description of the impact of heat and radiation upon repair proteins. Based on the parameters used, populations up to 4-5 hits are relevant for the calculation of the survival. The model describes intuitively the mathematical behaviour of apoptotic and nonapoptotic cell death. Linear-quadratic-linear behaviour of the logarithmic cell survival, fractionation, and (with one exception) the dose rate dependencies are described correctly. The model covers the time gap dependence of the synergistic cell killing due to combined application of heat and radiation, but further validation of the proposed approach based on experimental data is needed. However, the model offers a work bench for testing different biological concepts of damage induction, repair, and statistical approaches for calculating the variables of state.
机译:为了克服线性二次模型的局限性,并考虑热量和辐射的协同效应,提出了一种新颖的放射生物学模型。该模型基于一系列细胞群,这些细胞群的特征在于辐射引起的损害(命中数)。细胞可以通过收集撞击来沿链向下移动,而通过修复过程可以向上移动。修复过程由修复概率决定,修复概率取决于状态变量,状态变量用于简单描述热量和辐射对修复蛋白的影响。根据所使用的参数,命中率高达4-5的种群与生存率的计算有关。该模型直观地描述了凋亡和非凋亡细胞死亡的数学行为。对数细胞存活率,分级分离和(除一个例外)剂量率依赖性的线性-二次-线性行为已正确描述。该模型涵盖了由于热和辐射的联合应用而导致的协同细胞杀伤的时间间隙依赖性,但是需要基于实验数据进一步验证所提出的方法。但是,该模型提供了一个工作台,用于测试损伤诱导,修复和用于计算状态变量的统计方法的不同生物学概念。

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