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首页> 外文期刊>The Journal of Chemical Physics >Rate-equation modelling and ensemble approach to extraction of parameters for viral infection-induced cell apoptosis and necrosis
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Rate-equation modelling and ensemble approach to extraction of parameters for viral infection-induced cell apoptosis and necrosis

机译:速率方程建模和集成方法提取病毒感染诱导的细胞凋亡和坏死参数

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We develop a theoretical approach that uses physiochemical kinetics modelling to describe cell population dynamics upon progression of viral infection in cell culture, which results in cell apoptosis (programmed cell death) and necrosis (direct cell death). Several model parameters necessary for computer simulation were determined by reviewing and analyzing available published experimental data. By comparing experimental data to computer modelling results, we identify the parameters that are the most sensitive to the measured system properties and allow for the best data fitting. Our model allows extraction of parameters from experimental data and also has predictive power. Using the model we describe interesting time-dependent quantities that were not directly measured in the experiment and identify correlations among the fitted parameter values. Numerical simulation of viral infection progression is done by a rate-equation approach resulting in a system of "stiff" equations, which are solved by using a novel variant of the stochastic ensemble modelling approach. The latter was originally developed for coupled chemical reactions. Published by AIP Publishing.
机译:我们开发了一种理论方法,该方法使用生理化学动力学模型来描述在细胞培养中病毒感染进展时的细胞种群动态,这会导致细胞凋亡(程序性细胞死亡)和坏死(直接细胞死亡)。通过查看和分析可用的已发布实验数据,确定了计算机模拟所需的几个模型参数。通过将实验数据与计算机建模结果进行比较,我们确定了对测量的系统属性最敏感的参数,并实现了最佳数据拟合。我们的模型允许从实验数据中提取参数,并且具有预测能力。使用该模型,我们描述了在实验中未直接测量的有趣的时间相关量,并确定了拟合参数值之间的相关性。病毒感染进程的数值模拟是通过速率方程方法完成的,该方法产生了一个“刚性”方程组,该方程组通过使用一种新的随机整体建模方法来解决。后者最初是为偶联化学反应而开发的。由AIP Publishing发布。

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