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Modelling Amperometric Biosensors Based on Chemically Modified Electrodes

机译:基于化学修饰电极的电流生物传感器建模

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摘要

The response of an amperometric biosensor based on a chemically modified electrode was modelled numerically. A mathematical model of the biosensor is based on a system of non-linear reaction-diffusion equations. The modelling biosensor comprises two compartments: an enzyme layer and an outer diffusion layer. In order to define the main governing parameters the corresponding dimensionless mathematical model was derived. The digital simulation was carried out using the finite difference technique. The adequacy of the model was evaluated using analytical solutions known for very specific cases of the model parameters. By changing model parameters the output results were numerically analyzed at transition and steady state conditions. The influence of the substrate and mediator concentrations as well as of the thicknesses of the enzyme and diffusion layers on the biosensor response was investigated. Calculations showed complex kinetics of the biosensor response, especially when the biosensor acts under a mixed limitation of the diffusion and the enzyme interaction with the substrate.
机译:对基于化学修饰电极的安培生物传感器的响应进行了数值建模。生物传感器的数学模型基于非线性反应扩散方程组。建模生物传感器包括两个隔室:酶层和外部扩散层。为了定义主要的控制参数,导出了相应的无量纲数学模型。使用有限差分技术进行数字仿真。使用模型参数非常特殊的情况下已知的分析解决方案评估模型的充分性。通过更改模型参数,可以在过渡和稳态条件下对输出结果进行数值分析。研究了底物和介体浓度以及酶和扩散层厚度对生物传感器响应的影响。计算显示了生物传感器响应的复杂动力学,尤其是当生物传感器在扩散和酶与底物相互作用的混合限制下起作用时。

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