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Determination of cefixime using a novel electrochemical sensor produced with gold nanowires/graphene oxide/electropolymerized molecular imprinted polymer

机译:使用由金纳米线/氧化石墨烯/电聚合分子印迹聚合物生产的新型电化学传感器测定头孢克肟

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摘要

Quantitative analysis of antibiotics is very important because these drugs are widely used to prevent or treat various diseases. Cefixime (CEF, a semi-synthetic antibiotic and the third generation of cephalosporin) is a bactericidal medicine that prevents formation of cell walls in bacteria as well as their growth and proliferation. It, thus, causes the death of bacteria. Antibiotics such as CEF are generally determined by chromatography and spectroscopy techniques. Electrochemical sensors are one of the fast, convenient and low-cost tools for measuring this type of compounds. In this research, an electrochemical sensor was constructed by modifying a glassy carbon electrode (GCE) with expanded graphene oxide and gold nanowires, and then its surface was electropolymerized with a molecular imprinted polymeric layer of polyaniline. The morphological characterization of the obtained film was carried out by scanning and transmission electron microscopy (SEM and TEM). The proposed sensor was analytically characterized on the purpose of comparing it to other modified GCEs. The sensor could work linearly for the concentration range of 20.0-950.0 nM and with a limit of detection of 7.1 nM. It was successfully applied to determine CEF traces in biological samples (i.e. serum and urine) with excellent recovery percentages.
机译:抗生素的定量分析非常重要,因为这些药物被广泛用于预防或治疗各种疾病。头孢克肟(CEF,一种半合成抗生素和第三代头孢菌素)是一种杀菌药物,可防止细菌中细胞壁的形成以及它们的生长和增殖。因此,它导致细菌死亡。抗生素(如CEF)通常通过色谱和光谱技术确定。电化学传感器是用于测量此类化合物的快速,便捷和低成本的工具之一。在这项研究中,通过用膨胀的氧化石墨烯和金纳米线修饰玻璃碳电极(GCE)来构造电化学传感器,然后将其表面与分子印迹的聚苯胺聚合物层电聚合。通过扫描和透射电子显微镜(SEM和TEM)对获得的膜进行形态表征。拟议的传感器经过分析表征,目的是将其与其他改进的GCE进行比较。该传感器可以在20.0-950.0 nM的浓度范围内线性工作,检测极限为7.1 nM。它已成功应用于具有良好回收率的生物样品(即血清和尿液)中的CEF痕量测定。

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