Centro de Ciências Naturais e Humanas, Universidade Federal do ABC, Santo André, SP, Brazil.
J Colloid Interface Sci. 2010 Jun 15;346(2):442-7. doi: 10.1016/j.jcis.2010.03.036. Epub 2010 Mar 20.
A novel biosensor for glucose was prepared by adsorption of 1,1'-bis(4-carboxybenzyl)-4,4'-bipyridinium di-bromide compound (H(2)BpybcBr(2)) onto the surface of a nanocrystalline TiO(2) film deposited onto FTO glasses, which was used as a platform to assemble the enzyme glucose oxidase to the electrode surface. The H(2)BpybcBr(2)/TiO(2)/FTO modified electrode was characterized by scanning electron microscopy, X-ray fluorescence image, cyclic voltammograms and spectroelectrochemical measurements. The immobilization of GOD on functionalized TiO(2) film led to stable amperometric biosensing for glucose with a linear range from 153 micromol L(-1) to 1.30 mmol L(-1) and a detection limit of 51 micromol L(-1). The apparent Michaelis-Menten constant (K(m)) was estimated to be 3.76 mmol L(-1), which suggested a high enzyme-substrate affinity. The maximum electrode sensitivity was 1.25 microA mmol L(-1). The study proved that the combination of viologen mediators with TiO(2) film retains the electrocatalytic activity of the enzyme, and also enhances the electron transfer process, and hence regenerating the enzyme in the reaction with glucose.
一种新型的葡萄糖生物传感器是通过将 1,1'-双(4-羧基苄基)-4,4'-联吡啶二溴化物(H(2)BpybcBr(2))吸附到沉积在 FTO 玻璃上的纳米晶 TiO(2)薄膜表面上制备的,该薄膜可用作将酶葡萄糖氧化酶组装到电极表面的平台。H(2)BpybcBr(2)/TiO(2)/FTO 修饰电极通过扫描电子显微镜、X 射线荧光图像、循环伏安法和光谱电化学测量进行了表征。GOD 在功能化 TiO(2)薄膜上的固定化导致对葡萄糖的稳定电流型生物传感,线性范围为 153 μmol L(-1)至 1.30 mmol L(-1),检测限为 51 μmol L(-1)。估计表观米氏常数(K(m))为 3.76 mmol L(-1),表明酶-底物具有高亲和力。最大电极灵敏度为 1.25 μA mmol L(-1)。该研究证明了与 TiO(2)薄膜结合的紫罗碱介体保留了酶的电催化活性,并且还增强了电子转移过程,从而在与葡萄糖的反应中再生了酶。