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Bifunctional Trehalose Anode Incorporating Two Covalently Linked Enzymes Acting in Series

机译:双功能海藻糖阳极结合两个串联的共价连接酶。

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A bienzymatic electrode incorporating trehalase (Tre) and glucose oxidase (GOx) covalently bound to the surface of Pt through a functionalized thiol linker (Tre|GOx|Pt) has been designed and assembled and its catalytic properties examined by chemical and electrochemical methods in aqueous phosphate buffer solutions (PBS, pH 7.4). Exposure of Tre| GOx|Pt to PBS containing trehalose (Tr) and subsequent polarization at 0.6 V versus Ag/AgCl yielded after a few minutes well-defined steady-state currents ascribed to the oxidation of hydrogen peroxide generated by the GOx-mediated oxidation of glucose (Gl) produced by the Tre-mediated dissociation of Tr. Plots of the steady-state currents versus [Tr] over the range examined, i.e., 5-25 mM, were found to be linear. Implications of these results toward the development of an implantable biofuel cell as an autonomous energy conversion device for insects are discussed.
机译:设计并组装了通过功能化的硫醇连接基(Tre | GOx | Pt)与Pt表面共价结合的海藻糖酶(Tre)和葡萄糖氧化酶(GOx)组成的双酶电极,并通过化学和电化学方法在水溶液中研究了其催化性能。磷酸盐缓冲溶液(PBS,pH 7.4)。 Tre的曝光|含有海藻糖(Tr)的PBS中的GOx | Pt以及随后在相对于Ag / AgCl的0.6 V极化下产生的清晰定义的稳态电流归因于GOx介导的葡萄糖氧化产生的过氧化氢的氧化)是由Tre介导的Tr解离产生的。发现在检查范围内,即5-25 mM,稳态电流与[Tr]的关系图是线性的。讨论了这些结果对可植入生物燃料电池作为昆虫自主能量转换装置的开发的意义。

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