Iwasaki Y, Horiuchi T, Niwa O
NTT Lifestyle and Environmental Technology Laboratories, Atsugi, Kanagawa, Japan.
Anal Chem. 2001 Apr 1;73(7):1595-8. doi: 10.1021/ac0012851.
We describe the surface plasmon resonance (SPR) detection of an enzymatic turnover reaction and the measurement of glucose concentration using a multienzyme layer modified gold electrode. We constructed an osmium redox polymer mediated enzyme sensor on a gold thin-film electrode and monitored electrochemical reaction by SPR measurement. Unlike the usual binding assay with SPR, here we used SPR to detect the redox state of an electron mediator that was the result of the electron-transfer reaction of sequential enzymatic reactions. Therefore, the degree of refractive index change was independent of the dielectric property of the substrate and enzymatic molecular recognition was converted to refractive index change with amplification. For the quantitative evaluation of glucose with this method, we used chronopotentiometry and a linear relation was obtained between the glucose concentration and the rate of refractive index change.
我们描述了使用多酶层修饰金电极对酶促周转反应进行表面等离子体共振(SPR)检测以及葡萄糖浓度测量的方法。我们在金薄膜电极上构建了锇氧化还原聚合物介导的酶传感器,并通过SPR测量监测电化学反应。与通常的SPR结合测定不同,在这里我们使用SPR检测电子介体的氧化还原状态,该状态是连续酶促反应的电子转移反应的结果。因此,折射率变化程度与底物的介电性质无关,酶分子识别通过放大转化为折射率变化。为了用该方法对葡萄糖进行定量评估,我们使用计时电位法,并获得了葡萄糖浓度与折射率变化率之间的线性关系。