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Algorithmic Simulation and Mathematical Modeling in Studying the Kinetics of Iron (II)-Ascorbate-Dependent Lipid Peroxidation

机译:研究铁(II)依赖性脂质过氧化的动力学研究中的算法模拟与数学建模

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We studied mathematical modeling of lipid peroxidation using a biochemical model system of iron (II)-ascorbate-dependent lipid peroxidation of rat hepatocyte mitochondrial fractions. We found that antioxidants extracted from plants demonstrate a high intensity of peroxidation inhibition. We simplified the system of differential equations that describes the kinetics of the mathematical model to a first order equation, which can be solved analytically. Moreover, we endeavor to algorithmically and heuristically recreate the processes and construct an environment that closely resembles the corresponding natural system. Our results demonstrate that it is possible to theoretically predict both the kinetics of oxidation and the intensity of inhibition without resorting to analytical and biochemical research, which is important for cost-effective discovery and development of medical agents with antioxidant action from the medicinal plants.
机译:我们使用铁(II)的生物化学模型系统研究了脂质化学模型系统的脂质过氧化的数学建模依赖于大鼠肝细胞线粒体级分的脂质过氧化。我们发现从植物中提取的抗氧化剂表现出高强度的过氧化抑制。我们简化了描述了将数学模型的动力学描述为第一阶方程的微分方程系统,这可以分析解决。此外,我们努力算法和启发性地重新创建过程并构建与相应的自然系统非常相似的环境。我们的结果表明,理论上可以预测氧化的动力学和抑制强度而不诉诸分析和生化研究,这对于具有来自药用植物的抗氧化作用的经济有效的发现和发展是重要的。

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