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Cell Population Modeling and Parameter Estimation for Continuous Cultures of Saccharomyces cerevisiae

机译:酿酒酵母连续培养的细胞种群建模和参数估计

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Saccharomyces cerevisiae is known to exhibit sustained oscillations in chemostats operated under aerobic and glucose-limited growth conditions. The oscillations are reflected both in intracellular and extracellular measurements. Our recent work has shown that unstructured cell population balance models are capable of generating sustained oscillations over an experimentally meaningful range of dilution rates. A disadvantage of such unstructured models is that they lack variables that can be compared directly to easily measured extracellular variables. Thus far, most of our work in model development has been aimed at achieving qualitative agreement with experimental data. In this paper, a segregated model with a simple structured description of the extracellular exvironment is developed and evaluated. The model accounts for the three most important metabolic pathways involved in cell growth with glucose substrate. As compared to completely unstructured models, the major advantage of the proposed model is that predictions of extracellular variables can be compared directly to experimental data. Consequently, the model structure is well suited for the application of estimation techniques aimed at determining unknown model prameters from available extracellular measurements. A steady-state parameter selection method developed in our group is extended to oscillatory dynamics to determine the parameters that can be estimated most reliably. The chosen parameters are estimated by solving a nonlinear programming problem formulated to minimize the difference between predictions and measurements of the extracellular variables. The efficiency of the parameter estimation scheme is demonstrated using simulated and experimental data.
机译:已知酿酒酵母在有氧和葡萄糖受限的生长条件下运行的化学恒温器中显示出持续的振荡。振荡反映在细胞内和细胞外的测量中。我们最近的工作表明,非结构化细胞群体平衡模型能够在实验上有意义的稀释率范围内产生持续振荡。这种非结构化模型的缺点是它们缺少可以直接与容易测量的细胞外变量进行比较的变量。到目前为止,我们在模型开发中的大部分工作都旨在与实验数据达成定性一致性。在本文中,开发并评估了具有简单结构描述的细胞外环境的隔离模型。该模型解释了涉及葡萄糖底物细胞生长的三个最重要的代谢途径。与完全非结构化模型相比,该模型的主要优点是可以将细胞外变量的预测直接与实验数据进行比较。因此,该模型结构非常适合估计技术的应用,该估计技术旨在从可用的细胞外测量中确定未知的模型参数。我们小组开发的稳态参数选择方法已扩展到振荡动力学,以确定可以最可靠地估计的参数。通过解决非线性编程问题来估计所选参数,该非线性编程问题被制定为最小化细胞外变量的预测和测量之间的差异。使用仿真和实验数据证明了参数估计方案的效率。

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