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Heme-protein Modified Electrodes for Highly Selective and Sensitive Detection of H2O2 from Apple Juice

机译:血红蛋白修饰电极用于苹果汁中H 2 O 2的高选择性和灵敏检测

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摘要

The development of an accurate, sensitive, and selective hydrogen peroxide (H2O2) diagnostic device with a low detection limit is important in the fields of biology and medicine. Numerous approaches have been reported for electrochemical detection of H2O2. These approaches exhibit good stability and selectivity with a low detection limit, but involve a complicated fabrication process. We designed and fabricated three enzyme-free H2O2 biosensors by coating a three-dimensional open-pore nickel foam (3D-Ni foam) electrode with heme proteins, namely, (hemoglobin (Hb), myoglobin (Mb), and cytochrome c (Cyt.c)). The heme protein-modified Ni foam can be directly used as electrodes, thereby simplifying the electrode fabrication process and offering advantages, such as enhanced electrode–electrolyte contact area and minimum diffusion resistance. Heme proteins can function as a redox mediator for shuttling electrons on the electrode–electrolyte interface and for engaging sufficient electro-active species exposed on the surface of the Ni foam for the Faradaic redox reaction. The immobilization of the heme proteins onto the 3D Ni foam was analyzed using scanning electron microscopy, UV-visible spectroscopy, contact angle, and Raman spectroscopy.udThe heme proteins maintained their biological functions and effective electronic connection and affected the interfacial properties of the Ni foam after immobilization. The electrochemical effects of the Ni foam electrodes modified with similar concentrations of different heme proteins (Hb, Mb, and Cyt.c) in the selectiveudoxidation of H2O2 were investigated and compared. Hence, these electrodes can be applied in the analysis of real samples, such as apple juice.
机译:具有低检测限的准确,灵敏和选择性的过氧化氢(H2O2)诊断设备的开发在生物学和医学领域很重要。已经报道了用于电化学检测H 2 O 2的许多方法。这些方法表现出良好的稳定性和选择性,并且检测限低,但是涉及复杂的制造过程。我们通过用血红素蛋白(血红蛋白(Hb),肌红蛋白(Mb)和细胞色素c(Cyt)覆盖三维开孔镍泡沫(3D-Ni泡沫)电极设计和制造了三种无酶H2O2生物传感器。C))。血红素蛋白改性的镍泡沫可直接用作电极,从而简化了电极的制造过程,并具有许多优点,例如增强了电极与电解质的接触面积和最小的扩散电阻。血红素蛋白可以充当氧化还原介体,使电子在电极-电解质界面上穿梭,并与暴露在镍泡沫表面上的足够的电活性物质结合,以进行法拉第氧化还原反应。使用扫描电子显微镜,紫外可见光谱,接触角和拉曼光谱分析了血红素蛋白在3D Ni泡沫上的固定情况。 ud血红素蛋白保持其生物学功能和有效的电子连接,并影响了Ni的界面性质固定后泡沫。研究和比较了用相似浓度的不同血红素蛋白(Hb,Mb和Cyt.c)修饰的Ni泡沫电极在H2O2的选择性过氧化中的电化学作用。因此,这些电极可用于分析真实样品(例如苹果汁)。

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