论文标题

用于辐射响应热增强的数学模型:热力学方法

Mathematical model for the thermal enhancement of radiation response: Thermodynamic approach

论文作者

De Mendoza, Adriana M., Michlíková, Soňa, Berger, Johann, Karschau, Jens, Kunz-Schughart, Leoni A., McLeod, Damian D.

论文摘要

放疗可以有效地杀死恶性细胞,但是治愈癌症患者所需的剂量可能会对邻近的健康组织造成严重的附带损害。高温(HT)是改善辐射治疗结果(RT)并越来越多地应用于医院的有前途的选择。但是,同时热放疗的协同作用尚不清楚,而其数学建模对于治疗计划至关重要。为了更好地理解这种协同作用,我们提出了一个理论模型,其中通过温和的HT造成了脱脂损伤对细胞受到放射敏感的细胞的比例来解释热增强比(TER)。进一步的损害最终杀死细胞或在非可逆过程中抑制其增殖。我们建议将TER与投资于敏化的能源成正比,这是一个简单的速率过程。假设蛋白质变性为HT诱导的损伤的主要驱动力,并考虑到细胞蛋白的热容量的温度依赖性,发现敏化速率呈指数依赖于温度。与以前的经验观察一致。我们的预测很好地从体外和体内研究中复制了实验数据,并解释了同时热放疗的细胞放射响应的热调节。

Radiotherapy can effectively kill malignant cells, but the doses required to cure cancer patients may inflict severe collateral damage to adjacent healthy tissues. Hyperthermia (HT) is a promising option to improve the outcome of radiation treatment (RT) and is increasingly applied in hospital. However, the synergistic effect of simultaneous thermoradiotherapy is not well understood yet, while its mathematical modelling is essential for treatment planning. To better understand this synergy, we propose a theoretical model in which the thermal enhancement ratio (TER) is explained by the fraction of cells being radiosensitised by the infliction of sublethal damage through mild HT. Further damage finally kills the cell or inhibits its proliferation in a non-reversible process. We suggest the TER to be proportional to the energy invested in the sensitisation, which is modelled as a simple rate process. Assuming protein denaturation as the main driver of HT-induced sublethal damage and considering the temperature dependence of the heat capacity of cellular proteins, the sensitisation rates were found to depend exponentially on temperature; in agreement with previous empirical observations. Our predictions well reproduce experimental data from in-vitro and in-vivo studies, explaining the thermal modulation of cellular radioresponse for simultaneous thermoradiotherapy.

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