论文标题

缺氧和酸度对癌症进化动力学的影响的数学研究

A mathematical study of the influence of hypoxia and acidity on the evolutionary dynamics of cancer

论文作者

Fiandaca, Giada, Delitala, Marcello, Lorenzi, Tommaso

论文摘要

缺氧和酸度充当具有更具侵略性表型的癌细胞选择的环境压力源。结果,对驱动肿瘤细胞适应低氧和酸性微环境适应的时空过程的更深入的理论理解可能会为肿瘤学和癌症治疗方面的研究途径提供新的途径。我们提出了一个数学模型,以研究缺氧和酸度对血管肿瘤癌细胞进化动力学的影响。该模型被称为局部差异方程的系统系统,这些方程描述了癌细胞的表型演化,这是对三种非生物因子的空间分布的动态变化的反应,这是肿瘤代谢的三个关键参与者:氧,葡萄糖和乳酸。基于实际数据校准版本的数值模拟的结果概括了肿瘤细胞的生态进化空间动力学及其对低氧和酸性微环境的适应性。此外,这样的结果证明了肿瘤细胞与非生物因素之间的非线性相互作用如何导致环境梯度的形成,这些环境梯度选择具有表型特征的细胞,这些特征随距离肿瘤内血管的距离而变化,从而促进了穆斯内表型异质性的出现。最后,我们的理论发现调解了早期研究的结论,表明在肿瘤中对缺氧和对酸度的抗性的顺序取决于氧气和乳酸在癌细胞进化动力学中充当环境压力源的方式。

Hypoxia and acidity act as environmental stressors promoting selection for cancer cells with a more aggressive phenotype. As a result, a deeper theoretical understanding of the spatio-temporal processes that drive the adaptation of tumour cells to hypoxic and acidic microenvironments may open up new avenues of research in oncology and cancer treatment. We present a mathematical model to study the influence of hypoxia and acidity on the evolutionary dynamics of cancer cells in vascularised tumours. The model is formulated as a system of partial integro-differential equations that describe the phenotypic evolution of cancer cells in response to dynamic variations in the spatial distribution of three abiotic factors that are key players in tumour metabolism: oxygen, glucose and lactate. The results of numerical simulations of a calibrated version of the model based on real data recapitulate the eco-evolutionary spatial dynamics of tumour cells and their adaptation to hypoxic and acidic microenvironments. Moreover, such results demonstrate how nonlinear interactions between tumour cells and abiotic factors can lead to the formation of environmental gradients which select for cells with phenotypic characteristics that vary with distance from intra-tumour blood vessels, thus promoting the emergence of intra-tumour phenotypic heterogeneity. Finally, our theoretical findings reconcile the conclusions of earlier studies by showing that the order in which resistance to hypoxia and resistance to acidity arise in tumours depend on the ways in which oxygen and lactate act as environmental stressors in the evolutionary dynamics of cancer cells.

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