Department of Chemistry and Drug Technologies, Sapienza University of Rome, Piazzale Aldo Moro, 500185 Rome, Italy.
Nanotechnology. 2009 Dec 16;20(50):505501. doi: 10.1088/0957-4484/20/50/505501. Epub 2009 Nov 12.
In this paper we report the use of ferrocenyl-tethered dendrimer (Fc-D) as an electrode modifier supported by a self-assembled monolayer coated gold surface. The pretreatment of electrodes with Fc-D allows the covalent immobilization of glucose oxidase. The resulting integrated hybrid system provides electrical contact between the redox center of the enzyme and the electrode, and improves the overall bioelectrocatalyzed oxidation of glucose. Cyclic voltammetry combined with surface plasmon resonance (SPR) is used to investigate the redox-induced orientation changes of ferrocene-tethered dendrimers and the optimal electrical wiring of the enzyme, depending on the length of the alkyl chain of the ferrocene-tethered groups. The amount of substrate controls the steady-state concentration ratio of Fc/Fc(+) in the film composition. Therefore, the SPR spectrum of the film is controlled by the reversible change in the refractive index of the enzyme-integrated redox film. The proposed method demonstrates a new procedure for developing a stable amperometric redox enzyme-based sensor by designing a new nanostructured material that control the biosensing performance.
在本文中,我们报告了使用偕二茂铁树枝状大分子(Fc-D)作为电极修饰剂,通过自组装单层涂覆金表面来支持。Fc-D 预处理电极可以使葡萄糖氧化酶共价固定。所得的集成混合系统在酶的氧化还原中心和电极之间提供了电接触,并改善了葡萄糖的整体生物电催化氧化。循环伏安法结合表面等离子体共振(SPR)用于研究偕二茂铁树枝状大分子的氧化还原诱导取向变化以及酶的最佳电布线,这取决于偕二茂铁连接基团的烷基链的长度。底物的量控制了薄膜组成中 Fc/Fc(+)的稳态浓度比。因此,薄膜的 SPR 光谱受酶整合氧化还原膜折射率的可逆变化控制。该方法通过设计一种新的纳米结构材料来控制生物传感性能,展示了开发稳定的基于电流型氧化还原酶传感器的新方法。