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Cell population balance and hybrid modeling of population dynamics for a single gene with feedback

机译:具有反馈的单个基因的细胞种群平衡和种群动态的混合建模

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Latest research on biological systems is steadily shifting from isolated single cells to entire cell populations. The latter are inherently heterogeneous, and their modeling requires approaches that explicitly account for this property. A comprehensive such approach is the cell population balance (CPB), which, however, is computationally expensive and becomes intractable for multi-variable models. In this work, we demonstrate the use of model-reduction to efficiently simulate cell population heterogeneity in a genetic network of a single gene with feedback. Starting from a 4-species model, we use singular perturbation analysis to derive a single equation for the intracellular protein concentration. We subsequently incorporate this equation to a hybrid model consisting of a CPB for the cell volume, and a continuum equation for the protein concentration. We finally compare the results obtained with the hybrid model with those of the full CPB, demonstrating the accuracy and computational efficiency of the hybrid methodology.
机译:生物系统的最新研究正在从孤立的单细胞稳定地转移到整个细胞群体。后者本质上是异构的,它们的建模需要明确说明此属性的方法。一种全面的此类方法是细胞种群平衡(CPB),但是它在计算上很昂贵,并且对于多变量模型来说变得棘手。在这项工作中,我们演示了使用模型简化来有效地模拟具有反馈的单个基因的遗传网络中的细胞群体异质性。从4种模型开始,我们使用奇异摄动分析得出细胞内蛋白质浓度的单个方程。随后,我们将此方程式合并到一个混合模型中,该模型由用于细胞体积的CPB和用于蛋白质浓度的连续方程组成。我们最终将混合模型与完整CPB的结果进行比较,证明了混合方法的准确性和计算效率。

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