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首页> 外文期刊>Microchimica Acta >Optimization of acetylcholinesterase immobilization on microelectrodes based on nitrophenyl diazonium for sensitive organophosphate insecticides detection
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Optimization of acetylcholinesterase immobilization on microelectrodes based on nitrophenyl diazonium for sensitive organophosphate insecticides detection

机译:基于硝基苯基重氮鎓的微电极上乙酰胆碱酯酶固定化用于敏感有机磷杀虫剂检测的优化

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摘要

The immobilization of acetylcholinesterase on platinum microelectrodes modified with p-nitrobenzenediazonium is optimized. In the first step, a layer of p-nitrophenyl groups was deposited on the surface and then reduced to p-aminophenyl groups. Finally, the enzyme was linked to the amino groups on the surface using glutaraldehyde. Each step of the electrode modification was characterized by cyclic voltammetry and electrochemical impedance spectroscopy (EIS) at acidic and neutral pH to modify the electric charges of different bound moieties. The deposition of diazonium groups was attempted by potentiometry, amperometry or CV, but only potentiometry proceeded without passivation of the surface. The use of microelectrodes improved the limit of detection of ethylparaoxon measurements to 20 nM (compared to 100 nM in case of screen-printed electrodes based on the same method of immobilization). The method allowed the production of stable and reproducible amperometric microbiosensors and may be adapted to other enzymes and electrode materials.
机译:优化了乙酰胆碱酯酶在对硝基苯重氮修饰的铂微电极上的固定。第一步,在表面上沉积一层对硝基苯基,然后还原为对氨基苯基。最后,使用戊二醛将酶连接到表面的氨基上。电极修饰的每个步骤均通过循环伏安法和电化学阻抗谱(EIS)在酸性和中性pH下进行表征,以修饰不同键合部分的电荷。重氮基团的沉积是通过电位计,安培计或CV尝试的,但是仅进行电位计而不使表面钝化。使用微电极可将对氧磷的检测极限提高到20 nM(相比之下,基于相同的固定方法,丝网印刷电极的检测极限为100 nM)。该方法允许生产稳定且可重复的电流型微生物传感器,并且可以适用于其他酶和电极材料。

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