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Analytical Expressions for Steady-State Concentrations of Substrate and Product in an Amperometric Biosensor with the Substrate Inhibition—The Adomian Decomposition Method

机译:具有底物抑制作用的安培生物传感器中底物和产物的稳态浓度的解析表达式——Adomian分解法

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A mathematical model of an amperometric biosensor with the substrate inhibition for steady-state condition is discussed. The model is based on the system of non-stationary diffusion equation containing a non-linear term related to non-Michaelis–Menten kinetics of the enzymatic reaction. This paper presents the analytical expression of concentrations and current for all values of parameters φ2s φ2s α and β . Here the Adomian decomposition method (ADM) is used to find the analytical expressions for substrate, product concentration and current. A comparison of the analytical approximation and numerical simulation is also presented. A good agreement between theoretical predictions and numerical results is observed.
机译:讨论了在稳态条件下具有底物抑制作用的电流型生物传感器的数学模型。该模型基于非平稳扩散方程组,该方程包含与酶反应的非Michaelis-Menten动力学相关的非线性项。本文给出了参数φ2sφ2sα和β的所有值的浓度和电流的解析表达式。在这里,使用Adomian分解法(ADM)来查找底物,产物浓度和电流的解析表达式。还提出了解析近似与数值模拟的比较。观察到理论预测和数值结果之间的良好一致性。

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