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A mechanistic investigation of the oxygen fixation hypothesis and oxygen enhancement ratio

机译:固定氧假说和增氧率的机理研究

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摘要

The presence of oxygen in tumours has substantial impact on treatment outcome; relative to anoxic regions, well-oxygenated cells respond better to radiotherapy by a factor 2.5–3. This increased radio-response is known as the oxygen enhancement ratio. The oxygen effect is most commonly explained by the oxygen fixation hypothesis, which postulates that radical-induced DNA damage can be permanently ‘fixed’ by molecular oxygen, rendering DNA damage irreparable. While this oxygen effect is important in both existing therapy and for future modalities such a radiation dose-painting, the majority of existing mathematical models for oxygen enhancement are empirical rather than based on the underlying physics and radiochemistry. Here we propose a model of oxygen-enhanced damage from physical first principles, investigating factors that might influence the cell kill. This is fitted to a range of experimental oxygen curves from literature and shown to describe them well, yielding a single robust term for oxygen interaction obtained. The model also reveals a small thermal dependency exists but that this is unlikely to be exploitable.
机译:肿瘤中氧气的存在会对治疗结果产生重大影响。相对于缺氧区域,充氧良好的细胞对放射疗法的反应更好,为2.5-3倍。这种增加的放射响应被称为氧气增强比。氧作用最常见的解释是氧固定假说,该假说假设自由基诱导的DNA损伤可以被分子氧永久“固定”,从而使DNA损伤无法修复。尽管这种氧气效应在现有疗法和辐射剂量绘画等未来方式中均很重要,但是大多数现有的用于增强氧气的数学模型都是经验性的,而不是基于基础的物理和放射化学。在这里,我们从物理原理出发,提出了一种氧增强损伤的模型,研究了可能影响细胞杀伤的因素。这与文献中的一系列实验氧曲线相吻合,并显示出对它们的良好描述,从而为获得的氧相互作用提供了一个可靠的术语。该模型还显示存在较小的热依赖性,但这不太可能被利用。

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