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Microenvironmental cooperation promotes early spread and bistability of a Warburg-like phenotype

机译:微环境合作促进了Warburg样表型的早期传播和双稳

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摘要

We introduce an in silico model for the initial spread of an aberrant phenotype with Warburg-like overflow metabolism within a healthy homeostatic tissue in contact with a nutrient reservoir (the blood), aimed at characterizing the role of the microenvironment for aberrant growth. Accounting for cellular metabolic activity, competition for nutrients, spatial diffusion and their feedbacks on aberrant replication and death rates, we obtain a phase portrait where distinct asymptotic whole-tissue states are found upon varying the tissue-blood turnover rate and the level of blood-borne primary nutrient. Over a broad range of parameters, the spreading dynamics is bistable as random fluctuations can impact the final state of the tissue. Such a behaviour turns out to be linked to the re-cycling of overflow products by non-aberrant cells. Quantitative insight on the overall emerging picture is provided by a spatially homogeneous version of the model.
机译:我们引入一个计算机模型,用于在与营养库(血液)接触的健康稳态组织内,以Warburg样溢出代谢异常表型的初始传播,旨在表征微环境对异常生长的作用。考虑到细胞的代谢活动,营养的竞争,空间扩散以及它们对异常复制和死亡率的反馈,我们获得了相图,其中通过改变组织血液更新率和血液水平,发现了明显的渐近全组织状态。携带的主要营养素。在广泛的参数范围内,扩展动态是双稳态的,因为随机波动会影响组织的最终状态。事实证明,这种行为与非异常细胞对溢出产物的再循环有关。该模型的空间同质版本提供了对整体新兴图片的定量洞察。

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