Abd-Rabboh Hisham S M, Meyerhoff Mark E
Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.
Talanta. 2007 May 15;72(3):1129-33. doi: 10.1016/j.talanta.2007.01.023.
The determination of glucose in beverages is demonstrated using newly developed fluoride selective optical sensing polymeric film that contains aluminum (III) octaethylporphyrin (Al[OEP]) ionophore and the chromoionophore ETH7075 cast at the bottom of wells of a 96-well polypropylene microtiter plate. The method uses a dual enzymatic reaction involving glucose oxidase enzyme (GOD) and horseradish peroxidase (HRP), along with an organofluoro-substrate (4-fluorophenol) as the source of fluoride ions. The concentration of fluoride ions after enzymatic reaction is directly proportional to the glucose level in the sample. The method has a detection limit of 0.8 mmol L(-1), a linear range of 0.9- 40 mmol L(-1) and a sensitivity of 0.125 absorbance unit/decade of glucose concentration. Glucose levels in several beverage samples determined using the proposed method correlate well with a reference spectrophotometric enzyme method based on detection of hydrogen peroxide using bromopyrogallol red dye (BPR). The new method can also be used to determine H(2)O(2) concentrations in the 0.1 - 50 mmol L(-1) range using a single enzymatic reaction involving H(2)O(2) oxidation of 4-fluorophenol catalyzed by HRP. The methodology could potentially be used to detect a wide range of substrates for which selective oxidase enzymes exist (to generate H(2)O(2)), with the high throughput of simple microtiter plate detection scheme.
使用新开发的氟化物选择性光学传感聚合物膜测定饮料中的葡萄糖,该膜含有八乙基卟啉铝(III)(Al[OEP])离子载体和色离子载体ETH7075,浇铸在96孔聚丙烯微量滴定板孔的底部。该方法使用涉及葡萄糖氧化酶(GOD)和辣根过氧化物酶(HRP)的双酶反应,以及有机氟底物(4-氟苯酚)作为氟离子源。酶促反应后氟离子的浓度与样品中的葡萄糖水平成正比。该方法的检测限为0.8 mmol L(-1),线性范围为0.9 - 40 mmol L(-1),灵敏度为0.125吸光度单位/葡萄糖浓度 decade。使用所提出的方法测定的几种饮料样品中的葡萄糖水平与基于使用溴邻苯三酚红染料(BPR)检测过氧化氢的参考分光光度酶法相关性良好。该新方法还可用于使用涉及HRP催化4-氟苯酚氧化H(2)O(2)的单酶反应来测定0.1 - 50 mmol L(-1)范围内的H(2)O(2)浓度。该方法有可能用于检测存在选择性氧化酶(以生成H(2)O(2))的广泛底物,具有简单微量滴定板检测方案的高通量。