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Preparation of novel electrochemical glucose biosensors for whole blood based on antibiofouling polyurethane-heparin nanoparticles

机译:基于抗污垢聚氨酯-肝素纳米粒子的新型全血电化学葡萄糖生物传感器的制备

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摘要

In this paper, the novel polyurethane-heparin nanoparticles (PU-Hep NPs) were synthesized and used to establish an amperometric glucose biosensor that can be applied in whole blood directly, which was based on the antibiofouling property of PU-Hep NPs. More details of preparation of PU-Hep NPs, immobilizing glucose oxidase (GOx) on (PU-Hep)/glass carbon electrode (GCE) and its electrochemical behavior in whole blood were presented. The cyclic voltammetric results indicated that GOx immobilized on the PU-Hep NPs exhibited direct electron transfer reaction, and the cyclic voltammogram (CV) displayed a pair of well-defined and nearly symmetric redox peaks with a formal potential of -408 mV. The biosensor had good electrocatalytic activity toward glucose with a low detection limit 1.4 × 10~(-5) M in whole blood. The glucose biosensor did not respond to ascorbic acid (AA) and uric acid (UA) at their concentration normally encountered in blood. The development of materials science will bring a new momentum to electrical analysis.
机译:本文基于PU-Hep NPs的抗污垢特性,合成了新型聚氨酯-肝素纳米颗粒(PU-Hep NPs),并用于建立可直接应用于全血的安培型葡萄糖生物传感器。介绍了PU-Hep NPs的制备,将葡萄糖氧化酶(GOx)固定在(PU-Hep)/玻璃碳电极(GCE)上的更多细节及其在全血中的电化学行为。循环伏安结果表明,固定在PU-Hep NP上的GOx表现出直接的电子转移反应,循环伏安图(CV)显示了一对定义明确且几乎对称的氧化还原峰,形式电势为-408 mV。该生物传感器对葡萄糖具有良好的电催化活性,在全血中的检出限低至1.4×10〜(-5)M。葡萄糖生物传感器对血液中通常遇到的抗坏血酸(AA)和尿酸(UA)没有反应。材料科学的发展将为电气分析带来新的动力。

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