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Miming the cancer-immune system competition by kinetic Monte Carlo simulations

机译:通过动力学蒙特卡洛模拟模拟癌症-免疫系统的竞争

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In order to mimic the interactions between cancer and the immune system at cell scale, we propose a minimal model of cell interactions that is similar to a chemical mechanism including autocatalytic steps. The cells are supposed to bear a quantity called activity that may increase during the interactions. The fluctuations of cell activity are controlled by a so-called thermostat. We develop a kinetic Monte Carlo algorithm to simulate the cell interactions and thermalization of cell activity. The model is able to reproduce the well-known behavior of tumors treated by immunotherapy: the first apparent elimination of the tumor by the immune system is followed by a long equilibrium period and the final escape of cancer from immunosurveillance. Published by AIP Publishing.
机译:为了在细胞规模上模拟癌症与免疫系统之间的相互作用,我们提出了一种细胞相互作用的最小模型,该模型类似于包括自催化步骤在内的化学机制。假定细胞具有一定数量的活性,该活性可能在相互作用过程中增加。细胞活性的波动由所谓的恒温器控制。我们开发了一种动力学蒙特卡洛算法来模拟细胞相互作用和细胞活性的热化。该模型能够重现通过免疫疗法治疗的肿瘤的众所周知的行为:免疫系统首先明显消除肿瘤,然后是一个较长的平衡期,最后是癌症从免疫监视中逃脱。由AIP Publishing发布。

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