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Computational modelling of amperometric biosensors in the case of substrate and product inhibition

机译:底物和产物抑制情况下的安培生物传感器的计算模型

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In this paper the response of an amperometric biosensor at mixed enzyme kinetics and diffusion limitations is modelled in the case of the substrate and the product inhibition. The model is based on non-stationary reaction–diffusion equations containing a non-linear term related to non-Michaelis–Menten kinetics of an enzymatic reaction. A numerical simulation was carried out using a finite difference technique. The complex enzyme kinetics produced different calibration curves for the response at the transition and the steady-state. The biosensor operation is analysed with a special emphasis to the conditions at which the biosensor response change shows a maximal value. The dependence of the biosensor sensitivity on the biosensor configuration is also investigated. Results of the simulation are compared with known analytical results and with previously conducted researches on the biosensors. Keywords Modelling - Simulation - Reaction–diffusion - Biosensor - Inhibition
机译:在本文中,在底物和产物抑制的情况下,模拟了安培生物传感器在混合酶动力学和扩散限制下的响应。该模型基于非平稳反应扩散方程,该方程包含与酶反应的非Michaelis-Menten动力学相关的非线性项。使用有限差分技术进行了数值模拟。复杂的酶动力学产生了不同的校准曲线,以反映跃迁和稳态时的响应。分析生物传感器的操作时要特别注意生物传感器响应变化显示最大值的条件。还研究了生物传感器灵敏度对生物传感器配置的依赖性。将模拟结果与已知的分析结果以及先前对生物传感器进行的研究相比较。关键词建模-模拟-反应扩散-生物传感器-抑制

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