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Pseudo-equilibrium approach to the design and use of enzyme-based amperometric biosensors evaluated using a sensor for hydrogen peroxide

机译:伪平衡方法设计和使用基于酶的安培生物传感器,该传感器使用过氧化氢传感器进行评估

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摘要

This paper describes a pseudo-equilibrium approach to the measurement and data-processing steps in the use of enzyme-based amperometric biosensors for substrates. The goal of the method is to obtain the response corresponding to reaction of all substrate in a fixed volume of solution with the expectation that this will improve the linear range and ruggedness relative to the conventional steady-state option. The biosensor is used in a rotating disk mode such that data for current versus time can be monitored with and without rotation of the sensor. With the sensor rotating at moderately high speed, current is monitored until an initial steady-state response is obtained after which the rotation is stopped and current is monitored until a second steady-state response is obtained. Under controlled conditions, the transition form the first to the second steady-state condition corresponds to reaction of virtually all of the substrate in a small fixed volume of solution controlled by the dimensions of the diffusion layer. Integration of current as a function of time yields the charge corresponding to reaction fo substrate in the fixed volume established by the diffusion process. Evaluation of this pseudo-equilibrium option using a peroxidase=-based sensor for hydrogen peroxide yielded a linear range extending to at least four times the Michaelis constant and a pH dependence approximately 40-fold less than steady-state currents obtained from the same data sets.
机译:本文介绍了一种伪平衡方法,用于在基于酶的电流型生物传感器对底物的使用中进行测量和数据处理。该方法的目标是获得与所有底物在固定体积的溶液中的反应相对应的响应,并期望这将相对于常规稳态选项提高线性范围和坚固性。生物传感器以旋转盘模式使用,因此可以在有或没有传感器旋转的情况下监视电流与时间的数据。在传感器以适当的高速度旋转的情况下,监视电流,直到获得初始稳态响应为止,此后停止旋转,并监视电流,直到获得第二稳态响应。在受控条件下,从第一稳态条件到第二稳态条件的转变对应于几乎所有基板在由扩散层的尺寸控制的固定小体积溶液中的反应。电流作为时间的函数积分,产生的电荷对应于基板在扩散过程中形成的固定体积中的反应。使用基于过氧化物酶=的过氧化氢传感器对该伪平衡方案进行评估,得出的线性范围至少是米氏常数的四倍,pH依赖性比从相同数据集获得的稳态电流小约40倍。

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