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A TiO2-Sol-Gel Derived Prussian Blue Nanoparticles-Based Glucose Biosensor

机译:TiO2-Sol-Gel衍生的普鲁士蓝纳米颗粒葡萄糖生物传感器

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A highly sensitive and selective glucose biosensor was designed by immobilizing glucose oxidase (GOD) on a Prussian blue nanoparticles (nanoPBs) modified glassy carbon electrode using a novel titanic dioxide Solution-Gelation (TiO2-Sol-Gel) technique. Glucose measurement was based on the level of hydrogen peroxide (H2O2) produced concomitantly with the reaction of glucose and oxygen mediated by GOD. NanoPBs catalyze this reaction efficiently by reducing the reaction potential and improving GOD activity. The biosensor showed voltaic response to H2O2 in a linear range of 5.0 脳 10-7 to 4.0 脳 10-4 mol/L and amperometric response to glucose in a linear range of 1.0 脳 10-4 to 2.4 脳 10-2 mmol/L with fine reproducibility (relative standard deviation varied from 3.6% to 4.2%). This nanoPBs-based biosensor also exhibits high recovery (97% 101.5%) for measuring blood glucose levels and the developed method is applicable for large-scaled manufacturing of disposable biosensors.
机译:通过使用新型的二氧化钛溶液-凝胶化(TiO2-Sol-Gel)技术将葡萄糖氧化酶(GOD)固定在普鲁士蓝纳米颗粒(nanoPBs)修饰的玻碳电极上,设计了一种高灵敏度和选择性的葡萄糖生物传感器。葡萄糖测量基于伴随GOD介导的葡萄糖和氧气反应而产生的过氧化氢(H2O2)的水平。 NanoPBs通过降低反应电位并改善GOD活性来有效催化该反应。该生物传感器对H2O2的伏安响应线性范围为5.0脳10-7至4.0脳10-4 mol / L,对葡萄糖的安培响应线性范围为1.0脳10-4至2.4脳10-2 mmol / L具有良好的重现性(相对标准偏差从3.6%到4.2%不等)。这种基于nanoPBs的生物传感器还具有很高的回收率(97%101.5%),可用于测量血糖水平,该开发的方法适用于大规模生产一次性生物传感器。

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