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首页> 外文期刊>Sensors and Actuators. B, Chemical >Amperometric biosensor for hypoxanthine based on immobilized xanthine oxidase on nanocrystal gold-carbon paste electrodes
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Amperometric biosensor for hypoxanthine based on immobilized xanthine oxidase on nanocrystal gold-carbon paste electrodes

机译:基于固定化的黄嘌呤氧化酶在纳米晶金-碳糊电极上的次黄嘌呤安培生物传感器

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摘要

The preparation and performance of a xanthine oxidase (XOD) biosensor, based on a carbon paste electrode (CPE) modified with elec-trodeposited gold nanoparticles (nAu), for the amperometric determination of hypoxanthine (Hx) is reported. Different XOD biosensor configurations were evaluated and compared with electrodes constructed by immobilizing XOD onto unmodified CPE and with biosensors prepared using glassy carbon electrodes and gold disk electrodes modified with electrodeposited gold. The XOD-nAu-CPE in which the enzyme was immobilized by cross-linking with glutaraldehyde (GA) and BSA exhibited the highest amperometric signal for Hx. Although Hx detection is usually carried out at potential values of around +600 mV versus Ag/AgCl, the GA-BSA-XOD-nAu-CPE allowed this de-tection to be carried out at 0.00 V, thus minimizing potential interferences from electrochemically oxidizable substances such as ascorbic acid. Experimental variables concerning the biosensor preparation were optimized. Calibration plots for Hx were constructed with the biosensor operating at +600 mV and at 0.00 V. The detection limit for Hx, 2.2 x 10~(-7) moll~(-1), obtained using the latter potential value is similar to the best detection limits reported in the literature with other biosensor designs working at much more extreme potentials. The usefulness of the biosensor for the analysis of real samples was demonstrated by determining Hx in sardines and chicken meat.
机译:报告了黄嘌呤氧化酶(XOD)生物传感器的制备和性能,该传感器基于经电沉积金纳米颗粒(nAu)修饰的碳糊电极(CPE),用于安培测定次黄嘌呤(Hx)。评估了不同的XOD生物传感器配置,并将其与通过将XOD固定在未修饰的CPE上构建的电极以及使用玻璃碳电极和经电沉积金修饰的金盘电极制备的生物传感器进行了比较。通过与戊二醛(GA)和BSA交联固定化酶的XOD-nAu-CPE对Hx表现出最高的安培信号。尽管通常在相对于Ag / AgCl的电势值为+600 mV的条件下进行Hx检测,但GA-BSA-XOD-nAu-CPE可以在0.00 V的电压下进行检测,从而将电化学氧化产生的电势干扰降至最低诸如抗坏血酸的物质。优化了有关生物传感器制备的实验变量。使用生物传感器在+600 mV和0.00 V的电压下构建Hx的标定图。使用后者的电位值获得的Hx的检出限为2.2 x 10〜(-7)moll〜(-1)。与其他生物传感器设计相比,文献中报道的最佳检测极限要大得多。通过测定沙丁鱼和鸡肉中的Hx证明了生物传感器对实际样品进行分析的有用性。

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