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Direct electrochemistry of sarcosine oxidase on graphene, chitosan and silver nanoparticles modified glassy carbon electrode and its biosensing for hydrogen peroxide

机译:肌氨酸氧化酶在石墨烯,壳聚糖和银纳米粒子修饰的玻碳电极上的直接电化学及其对双氧水的生物传感

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摘要

The direct electrochemistry of sacrosine oxidase (SOX) immobilized on graphene, chitosan and silver nanoparticles (AgNPs) modified glassy carbon electrode was realized. SOX exhibits a pair of well-defined reversible redox peaks in 0.1 M pH 7.0 phosphate buffer solution (PBS) with the oxidation peak potential of -0.446 V and the reduction peak potential of -0.496 V. The immobilized SOX retains its bioactivity, and exhibits a surface confined, reversible two-proton and two-electron transfer reaction. It also has good stability, and a fast heterogeneous electron transfer rate with the rate constant (k_s) of 1.8 s~(-1). The surface coverage of SOX is 1.18 × 10~(-7) mol/cm~2. This biosensor shows excellent sensitivity towards H_2O_2 in 0.1 M PBS (pH 7.0) with a wide linear range from 1.0 to 177 μM. The detection limit is 1.0 μM. The apparent Michaelis-Menten constant for immobilized SOX is calculated to be 0.18 mM. The excellent performance of the biosensor is attributed to large specific surface area and high conductivity of graphene and AgNPs, and good biocompatibility of chitosan, which improve the enzyme absorption and promote direct electron transfer between SOX and the electrode surface.
机译:实现了固定在石墨烯,壳聚糖和银纳米颗粒(AgNPs)修饰的玻碳电极上的sa糖氧化酶(SOX)的直接电化学。 SOX在0.1 M pH 7.0磷酸盐缓冲溶液(PBS)中显示一对明确定义的可逆氧化还原峰,氧化峰电位为-0.446 V,还原峰电位为-0.496V。固定化的SOX保留了其生物活性,并表现出表面受限的可逆的二质子和二电子转移反应。它还具有良好的稳定性,并且具有1.8 s〜(-1)的速率常数(k_s)的快速异质电子传输速率。 SOX的表面覆盖率为1.18×10〜(-7)mol / cm〜2。该生物传感器在0.1 M PBS(pH 7.0)中显示出对H_2O_2的出色灵敏度,线性范围从1.0到177μM。检测限为1.0μM。固定的SOX的表观Michaelis-Menten常数经计算为0.18 mM。该生物传感器的优异性能归因于较大的比表面积和石墨烯和AgNPs的高电导率,以及壳聚糖的良好生物相容性,从而改善了酶的吸收并促进了SOX与电极表面之间的直接电子转移。

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