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Enzyme-Based Biosensors: Tackling Electron Transfer Issues

机译:基于酶的生物传感器:解决电子转移问题

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摘要

This review summarizes the fundamentals of the phenomenon of electron transfer (ET) reactions occurring in redox enzymes that were widely employed for the development of electroanalytical devices, like biosensors, and enzymatic fuel cells (EFCs). A brief introduction on the ET observed in proteins/enzymes and its paradigms (e.g., classification of ET mechanisms, maximal distance at which is observed direct electron transfer, etc.) are given. Moreover, the theoretical aspects related to direct electron transfer (DET) are resumed as a guideline for newcomers to the field. Snapshots on the ET theory formulated by Rudolph A. Marcus and on the mathematical model used to calculate the ET rate constant formulated by Laviron are provided. Particular attention is devoted to the case of glucose oxidase (GOx) that has been erroneously classified as an enzyme able to transfer electrons directly. Thereafter, all tools available to investigate ET issues are reported addressing the discussions toward the development of new methodology to tackle ET issues. In conclusion, the trends toward upcoming practical applications are suggested as well as some directions in fundamental studies of bioelectrochemistry.
机译:这篇综述总结了氧化还原酶中发生的电子转移(ET)反应现象的基本原理,氧化还原酶被广泛用于电分析设备的开发,例如生物传感器和酶促燃料电池(EFC)。简要介绍了在蛋白质/酶中观察到的ET及其范例(例如ET机制的分类,观察到直接电子转移的最大距离等)。此外,有关直接电子转移(DET)的理论方面已作为对该领域新手的指导而恢复。提供了由Rudolph A. Marcus提出的ET理论的快照以及由Laviron提出的用于计算ET速率常数的数学模型的快照。特别注意葡萄糖氧化酶(GOx)的情况,它被错误地分类为能够直接转移电子的酶。此后,报告了可用于调查ET问题的所有工具,从而解决了开发解决ET问题的新方法的讨论。总之,建议了即将到来的实际应用的趋势以及生物电化学基础研究的一些方向。

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