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Theoretical Model of Lipid Peroxidation Kinetics for Complexes of Cytochrome c and Cardiolipin with Participation of Antioxidants

机译:抗氧化剂参与的细胞色素C和心肺素复合物脂质过氧化动力学的理论模型

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It is represented the kinetic model of lipid peroxidation process take place in the lipid membranes owing to a peroxidase activity of the complexes of cytochrome c and cardiolipine. The theoretical description of the studied kinetics includes two pathways: enzymatic and non-enzymatic, and takes into account the presence of direct-acting antioxidant: the molecules that act as the free radical scavengers, directly exhibiting a relatively high antiradical activity. The enzymatic pathway includes the reactions involving the complexes of cytochrome c and cardiolipin. The non-enzymatic pathway includes the reactions involving the free lipid radicals and antioxidant molecules. The obtained system of differential equations allows to simulate the kinetics of the lipid peroxidation process both accounting the inhibitory effect of the antioxidant and without it, and to test the antiradical activity of various types of antioxidants, as well as to find some unknown kinetic parameters by performing a comparison of the theoretical kinetic curves with the experimental ones.
机译:它代表了脂质过氧化过程的动力学模型,由于细胞色素C和心酚葡萄球络合物的过氧化物酶活性,在脂质膜中发生。研究的动力学的理论描述包括两种途径:酶促和非酶促,考虑到直接作用抗氧化剂的存在:用作自由基清除剂的分子,直接表现出相对高的抗抗抗抗抗液体活性。酶促途径包括涉及细胞色素C和心绞痛的复合物的反应。非酶促途径包括涉及游离脂质自由基和抗氧化分子的反应。所获得的差分方程系统允许模拟脂质过氧化过程的动力学,既考虑抗氧化剂的抑制作用,也没有它,并测试各种类型的抗氧化剂的抗动物活性,以及​​找到一些未知的动力学参数对实验组进行理论动力学曲线的比较。

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