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Square-Wave Voltammetry Determination of Ciprofloxacin in Pharmaceutical Formulations and Milk Using a Reduced Graphene Oxide Sensor

机译:方波伏安法测定药物制剂中环丙沙星的使用还用氧化石墨烯氧化物传感器测定药物制剂和牛奶中的方法

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In this paper, a simple, sensitive and precise electroanalytical method was developed using a chemically-reduced graphene-oxide (CRGO)-modified glassy carbon electrode and square wave voltammetry (SWV) for determination of ciprofloxacin in pharmaceutical formulations (tablets) and milk samples. Advantages of this sensor include a potential displacement of 100 mV and a 5-fold current increase for the electrochemical oxidation of ciprofloxacin, which resulted in a highly sensitive sensor, when compared to unmodified electrode. The improved properties of the modified electrode are likely due to the formation of a porous surface evidenced by the change in electrode kinetics (thin-layer diffusion process). The proposed sensor is free from interference of sample matrix (pharmaceutical formulations and low/high-fat milk) avoiding cumbersome processes such as previous separations, solvent extraction, or sample filtration (samples were only diluted in Britton-Robinson buffer solution). The results by SWV showed a limit of detection of 0.21 ?μmol L-1 (correspondent to 0.069 mg L-1), which is lower than the ones obtained using other carbon-based electrodes, relative standard deviations lower than 12%, and satisfactory recoveries in the range from 84 to 109%. The results obtained were statistically similar (95% confidence level) with those performed through high-performance liquid chromatography (HPLC).
机译:在本文中,使用化学减少的石墨烯 - 氧化物(CRGO)氧化玻璃电极和方波伏安法(SWV)来开发简单,敏感和精确的电偶联方法,用于测定药物制剂(片剂)和牛奶样品中的环丙沙星。该传感器的优点包括100mV的电位位移和用于环丙沙星的电化学氧化的5倍电流增加,这导致高敏感的传感器,与未改性电极相比。改性电极的改善性能可能是由于形成多孔表面通过电极动力学的变化(薄层扩散过程)的形成。所提出的传感器不含样品基质(药物制剂和低/高脂肪)的干扰,避免了繁琐的方法,例如先前的分离,溶剂萃取或样品过滤(样品仅在Britton-Robinson缓冲溶液中稀释)。 SWV的结果显示出0.21ΩμmolL-1(对应于0.069mg L-1)的检测极限,其低于使用其他碳基电极获得的相对标准偏差,以及令人满意的标准偏差回收率为84至109%。获得的结果与通过高效液相色谱(HPLC)进行的统计学上类似的(95%置信水平)。

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