Department of Chemistry, Physics and Environment, Faculty of Sciences and Environment, "Dunarea de Jos" University of Galati, 47 Domneasca Street, 800008 Galati, Romania.
Int J Mol Sci. 2021 Jul 7;22(14):7315. doi: 10.3390/ijms22147315.
In this paper, the electrochemical behavior of two types of sensors based on modified screen-printed electrodes (one screen-printed electrode based on carbon (SPCE) and another screen-printed electrode modified with Prussian Blue (PB/SPCE)) was studied with the aim of sensitive detection of diosmin, an active pharmaceutical compound from the class of flavonoids. The scan electron microscopy technique was used for the morphological characterization of PB/SPCE. The preliminary analysis assessed the electrochemical behavior of SPCE and PB/SPCE in KCl solution and in a double solution of potassium ferrocyanide-potassium chloride. It was shown that the active area of PB/SPCE is superior to the one of SPCE, the greater sensitivity being related with the presence of the electroactive modifier. Similarly, in the case of diosmin detection, the PB/SPCE sensor detect more sensitivity the diosmin due to the electrocatalytic effect of PB. From the study of the influence of reaction rate on the sensor's electrochemical response, it was shown that the detection process is controlled by the adsorption process, the degree of surface coverage with electroactive molecules being higher in the case of PB/SPCE. From the PB/SPCE calibration curve, it wasdetermined that it has high sensitivity and low detection and quantification limit values (limit of detection 5.22 × 10 M). The applicability of the PB/SPCE sensor was confirmed by sensitive analysis of diosmin in pharmaceutical products. The voltammetric method is suitable for the detection and quantification of diosmin in pharmaceutical products. The method is simple, accurate, and quick and can be used in routine analysis in the examination of the quality of pharmaceutical products and other types of samples.
本文研究了两种基于修饰丝网印刷电极(一种基于碳的丝网印刷电极(SPCE)和另一种用普鲁士蓝修饰的丝网印刷电极(PB/SPCE))的传感器的电化学行为,旨在灵敏检测二氢黄酮类化合物中的活性药物成分——橙皮苷。扫描电子显微镜技术用于 PB/SPCE 的形态特征分析。初步分析评估了 SPCE 和 PB/SPCE 在 KCl 溶液和铁氰化钾-氯化钾双溶液中的电化学行为。结果表明,PB/SPCE 的有效面积优于 SPCE,更高的灵敏度与电活性修饰剂的存在有关。同样,在检测橙皮苷时,由于 PB 的电催化作用,PB/SPCE 传感器对橙皮苷的检测更灵敏。从反应速率对传感器电化学响应的影响研究中可以看出,检测过程受吸附过程控制,在 PB/SPCE 情况下,电活性分子的表面覆盖率更高。从 PB/SPCE 的校准曲线可以确定,它具有高灵敏度和低检测及定量限(检测限为 5.22×10 M)。通过对药物中橙皮苷的敏感分析,证实了 PB/SPCE 传感器的适用性。伏安法适用于药物中橙皮苷的检测和定量。该方法简单、准确、快速,可用于药物质量常规分析和其他类型样品的检测。