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进化博弈论对理解和治疗癌症的贡献。

The Contribution of Evolutionary Game Theory to Understanding and Treating Cancer.

作者信息

Wölfl Benjamin, Te Rietmole Hedy, Salvioli Monica, Kaznatcheev Artem, Thuijsman Frank, Brown Joel S, Burgering Boudewijn, Staňková Kateřina

机构信息

Department of Mathematics, University of Vienna, Vienna, Austria.

Vienna Graduate School of Population Genetics, Vienna, Austria.

出版信息

Dyn Games Appl. 2022;12(2):313-342. doi: 10.1007/s13235-021-00397-w. Epub 2021 Aug 30.

Abstract

Evolutionary game theory mathematically conceptualizes and analyzes biological interactions where one's fitness not only depends on one's own traits, but also on the traits of others. Typically, the individuals are not overtly rational and do not select, but rather inherit their traits. Cancer can be framed as such an evolutionary game, as it is composed of cells of heterogeneous types undergoing frequency-dependent selection. In this article, we first summarize existing works where evolutionary game theory has been employed in modeling cancer and improving its treatment. Some of these game-theoretic models suggest how one could anticipate and steer cancer's eco-evolutionary dynamics into states more desirable for the patient via evolutionary therapies. Such therapies offer great promise for increasing patient survival and decreasing drug toxicity, as demonstrated by some recent studies and clinical trials. We discuss clinical relevance of the existing game-theoretic models of cancer and its treatment, and opportunities for future applications. Moreover, we discuss the developments in cancer biology that are needed to better utilize the full potential of game-theoretic models. Ultimately, we demonstrate that viewing tumors with evolutionary game theory has medically useful implications that can inform and create a lockstep between empirical findings and mathematical modeling. We suggest that cancer progression is an evolutionary competition between different cell types and therefore needs to be viewed as an evolutionary game.

摘要

进化博弈论从数学角度对生物相互作用进行概念化和分析,在这种相互作用中,一个个体的适应性不仅取决于自身特征,还取决于其他个体的特征。通常情况下,个体并非完全理性,不会主动选择,而是继承其特征。癌症可以被视为这样一种进化博弈,因为它由经历频率依赖选择的异质类型细胞组成。在本文中,我们首先总结了现有的研究成果,这些研究将进化博弈论应用于癌症建模和改善癌症治疗。其中一些博弈论模型表明,人们可以如何通过进化疗法预测癌症的生态进化动态,并将其引导到对患者更有利的状态。正如最近的一些研究和临床试验所表明的那样,这种疗法在提高患者生存率和降低药物毒性方面具有巨大潜力。我们讨论了现有的癌症及其治疗博弈论模型的临床相关性以及未来应用的机会。此外,我们还讨论了为更好地发挥博弈论模型的全部潜力所需的癌症生物学进展。最终,我们证明,用进化博弈论看待肿瘤具有医学上的实用意义,能够为实证研究结果和数学建模之间提供信息并建立紧密联系。我们认为癌症进展是不同细胞类型之间的进化竞争,因此需要将其视为一种进化博弈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/896f/9117378/e3ac39073b45/13235_2021_397_Fig1_HTML.jpg

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