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Electrochemical glucose biosensing via new generation DTP type conducting polymers/gold nanoparticles/glucose oxidase modified electrodes

机译:通过新一代DTP型导电聚合物/金纳米颗粒/葡萄糖氧化酶修饰的电极进行电化学葡萄糖生物传感

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摘要

The synthesis of derivatives of dithionepyrrole is a hot subject that has been studied extensively. In this study, a novel approach for constructing different glucose biosensors using conducting polymers of 4-(4H-dithyinol[3,2-b:2',3'-d]pyro11-4-yl)aniline and 4-(4H-dithyinol[3,2-b:2',3'-d]pyroll-4-yl)-[1,1'-biphenyl]-4-amine is proposed. After the synthesis and characterizations of the dithionepyrrole type monomers, they were used in glucose biosensing applications. The surface of gold electrode was modified with mercaptoethane sulfonic acid and paminothiophenol functionalized gold nanoparticles and aniline modified GOx. Electrochemical measurements were carried out by following the consumed oxygen due to the enzymatic reaction of glucose oxidase. DTP-PhNH2/AuNP/GOx and DTP-Ph-Ph-NH2/AuNP/GOx biosensors showed very good linearity between 0.1 and 2.5 mM, and 0.05 and 1 mM for glucose, respectively. LOD value was obtained for pDTP-Ph-NH2/AuNP/GOx as 5.00 x 10(-2) mM and for pDTP-Ph-Ph-NH2/AuNP/GOx as 9.86 x 10(-5) mM using S/N ratio. Optimization of molar ratio amount of AuNP/GOx, cycles amount to immobilize AuNP/GOx, conducting polymer thickness were examined. Finally, under optimized conditions, the amount of glucose in spiked human serum samples and recovery experiments were conducted. (C) 2016 Elsevier B.V. All rights reserved.
机译:二硫代吡咯的衍生物的合成是一个广泛研究的热点。在这项研究中,一种新颖的方法来构造不同的葡萄糖生物传感器使用4-(4H-dithyinol [3,2-b:2',3'-d] pyro11-4-yl)苯胺和4-(4H-提出了二甲状腺素[3,2-b:2',3'-d]吡咯-4-基)-[1,1'-联苯] -4-胺。在二硫代吡咯型单体的合成和表征后,将它们用于葡萄糖生物传感应用。金电极的表面用巯基乙烷磺酸和对氨基苯硫酚官能化的金纳米粒子和苯胺改性的GOx进行了修饰。通过追踪由于葡萄糖氧化酶的酶促反应而消耗的氧气来进行电化学测量。 DTP-PhNH2 / AuNP / GOx和DTP-Ph-Ph-NH2 / AuNP / GOx生物传感器分别在0.1和2.5 mM之间以及在0.05和1 mM之间显示出非常好的线性。使用S / N比获得pDTP-Ph-NH2 / AuNP / GOx的LOD值为5.00 x 10(-2)mM和pDTP-Ph-Ph2-NH2 / AuNP / GOx的LOD值为9.86 x 10(-5)mM 。检查了AuNP / GOx的摩尔​​比量,固定AuNP / GOx的循环量,导电聚合物厚度的优化。最后,在优化的条件下,进行了加标的人血清样品中的葡萄糖量和回收率实验。 (C)2016 Elsevier B.V.保留所有权利。

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