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肿瘤内死物质对放疗反应动力学的重要性。

The importance of dead material within a tumour on the dynamics in response to radiotherapy.

机构信息

Wolfson Centre for Mathematical Biology, Mathematical Institute, University of Oxford, Oxford, United Kingdom. Author to whom correspondence should be addressed.

出版信息

Phys Med Biol. 2020 Jan 10;65(1):015007. doi: 10.1088/1361-6560/ab4c27.

Abstract

In vivo tumours are highly heterogeneous, often comprising regions of hypoxia and necrosis. Radiotherapy significantly alters the intratumoural composition. Moreover, radiation-induced cell death may occur via a number of different mechanisms that act over different timescales. Dead material may therefore occupy a significant portion of the tumour volume for some time after irradiation and may affect the subsequent tumour dynamics. We present a three phase tumour growth model that accounts for the effects of radiotherapy and use it to investigate how dead material within the tumour may affect the spatio-temporal tumour response dynamics. We use numerical simulation of the model equations to characterise qualitatively different tumour volume dynamics in response to fractionated radiotherapy. We demonstrate examples, and associated parameter values, for which the properties of the dead material significantly alter the observed tumour volume dynamics throughout treatment. These simulations suggest that for some cases it may not be possible to accurately predict radiotherapy response from pre-treatment, gross tumour volume measurements without consideration of the dead material within the tumour.

摘要

体内肿瘤具有高度异质性,通常包含缺氧和坏死区域。放射治疗会显著改变肿瘤内的组成。此外,辐射诱导的细胞死亡可能通过多种不同的机制发生,这些机制作用于不同的时间尺度。因此,在照射后一段时间内,死亡物质可能会占据肿瘤体积的很大一部分,并可能影响后续的肿瘤动力学。我们提出了一个三阶段肿瘤生长模型,该模型考虑了放射治疗的影响,并利用它来研究肿瘤内的死亡物质如何影响时空肿瘤反应动力学。我们使用模型方程的数值模拟来定性地描述不同的肿瘤体积动力学对分割放疗的反应。我们展示了一些例子,以及相关的参数值,对于这些例子,死亡物质的特性会显著改变整个治疗过程中观察到的肿瘤体积动力学。这些模拟表明,对于某些情况,如果不考虑肿瘤内的死亡物质,仅根据治疗前的大体肿瘤体积测量来预测放射治疗反应,可能是不准确的。

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