a IRIT, CNRS, UT1 , Université de Toulouse , Toulouse , France.
b ITAV, CNRS, UT3 , Université de Toulouse , Toulouse , France.
Cell Cycle. 2019 Apr;18(8):795-808. doi: 10.1080/15384101.2019.1591125. Epub 2019 Apr 4.
Modeling and in silico simulations are of major conceptual and applicative interest in studying the cell cycle and proliferation in eukaryotic cells. In this paper, we present a cell cycle checkpoint-oriented simulator that uses agent-based simulation modeling to reproduce the dynamics of a cancer cell population in exponential growth. Our in silico simulations were successfully validated by experimental in vitro supporting data obtained with HCT116 colon cancer cells. We demonstrated that this model can simulate cell confluence and the associated elongation of the G1 phase. Using nocodazole to synchronize cancer cells at mitosis, we confirmed the model predictivity and provided evidence of an additional and unexpected effect of nocodazole on the overall cell cycle progression. We anticipate that this cell cycle simulator will be a potential source of new insights and research perspectives.
在研究真核细胞的细胞周期和增殖过程中,模型和计算机模拟具有重要的概念和应用意义。本文提出了一种基于基于代理的模拟建模的细胞周期检查点导向模拟器,用于重现指数增长的癌细胞群体的动力学。我们的计算机模拟得到了用 HCT116 结肠癌细胞获得的体外实验支持数据的成功验证。我们证明了该模型可以模拟细胞汇合和 G1 期的相应延长。使用诺考达唑将癌细胞同步到有丝分裂,我们证实了该模型的可预测性,并提供了诺考达唑对整个细胞周期进程的额外和意外影响的证据。我们预计这个细胞周期模拟器将成为新见解和研究视角的潜在来源。