首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Electrochemical sensor based on magnetite graphene oxide/ordered mesoporous carbon hybrid to detection of allopurinol in clinical samples
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Electrochemical sensor based on magnetite graphene oxide/ordered mesoporous carbon hybrid to detection of allopurinol in clinical samples

机译:基于磁铁矿石墨烯氧化物/有序介孔碳杂化的电化学传感器检测临床样品中的Allopurinol

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摘要

Allopurinol (ALO) is a radical scavenging clinical drug, a drug in the treatment of gout, an inhibitor of xanthine oxidase and an effective agent for anti-cancer purposes. The xanthine oxidase is thus essential, and the amount of ALO needs to be controlled more strictly. In this study, a new electrochemical sensor based on magnetite graphene oxide/ordered mesoporous carbon (Fe3O4@GO/OMC) hybrid was prepared and characterized. The results showed sphere shape Fe3O4 nanoparticles with a diameter in the range 17-22 nm on composite. Modification of carbon paste electrode (CPE) with Fe3O4@GO/OMC (Fe3O4@GO/OMC-CPE) allowed the ultrasensitive and selective detection of ALO at oxidation potential of 1.05 V with linear range of 0.05-7 mu mol L-1, limit of detection of 47 nmol L-1 and sensitivity of 708 mu A mmol(-1) L. Also, the results demonstrate that charge transfer at the interface of Fe3O4@GO/OMC hybrid can provide a synergistic effect in comparison with Fe3O4@GO and OMC. The unique surface chemistry of Fe3O4@GO/OMC interface allows pi-pi stacking and electrostatic interactions with ALO. The advantages are the possibility to regenerate the surface of the sensor, its rapid and easy of production, as well as its applicability for detection of ALO in Tablets and human serum samples, making Fe3O4@GO/OMC-CPE promising interface for bio-electrochemical applications.
机译:Allopurinol(ALO)是一种激进清除临床药物,一种药物治疗痛风,黄嘌呤氧化酶的抑制剂和用于抗癌目的的有效剂。因此,黄嘌呤氧化酶必不可少,需要更严格地控​​制ALO的量。在该研究中,制备了一种基于磁铁矿氧化物/有序介孔碳(Fe3O4 @ Go / OMC)杂种的新型电化学传感器。结果显示了在复合材料17-22nm范围内直径的球形Fe3O4纳米颗粒。使用Fe3O4 @ Go / OMC(Fe3O4 @ Go / OMC-CPE)改性碳糊电极(CPE)允许在1.05V的氧化电位下进行超敏和选择性检测,其线性范围为0.05-7μmolL-1, 47 nmol L-1的检测限度和708μmmol(-1)L的灵敏度。此外,结果表明FE3O4 @ GO / OMC杂种界面处的电荷转移可以提供与FE3O4 @相比的协同效果去和OMC。 Fe3O4 @ Go / OMC接口的独特表面化学允许PI-PI堆叠和与ALO的静电相互作用。优点是再生传感器表面,其快速易于生产的可能性,以及其在片剂和人血清样品中检测alo的适用性,使FE3O4 @ Go / OMC-CPE为生物电化学接口应用程序。

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