分子印迹过氧化聚吡咯包覆玻碳电极选择性电化学测定依托泊苷

IF 2.3 Q3 ELECTROCHEMISTRY
H. Hrichi, L. Monser, N. Adhoum
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引用次数: 10

摘要

开发了一种基于分子印迹聚合物的新型电化学传感器,用于抗癌剂依托泊苷(ETP)的选择性检测。在ETP分子存在下,通过吡咯在玻碳电极(GCE)上的循环伏安法(CV)电聚合制备传感器。利用CV在氢氧化钠介质中过氧化法提取聚合物基体中嵌入的ETP分子。利用微分脉冲伏安法(DPV)研究并优化了影响印迹膜(MIP)涂层传感器性能的各种重要参数。在最佳条件下,传感器响应在5.0×10−7M–1.0×10−5M范围内与ETP浓度呈线性关系(R2=0.99),LOD(3σ/m)为2.8×10−9M。所提出的传感器日内和日间的精密度(%RSD,n=6)分别为0.84%和2.46%。在赋形剂和ETP代谢产物等不同干扰分子存在的情况下,研究了MIP/GCE传感器对ETP的选择性。所开发的传感器对ETP具有很强的识别能力,并成功应用于注射剂型和生物体液中ETP的测定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selective Electrochemical Determination of Etoposide Using a Molecularly Imprinted Overoxidized Polypyrrole Coated Glassy Carbon Electrode
A simple and efficient new electrochemical sensor based on molecularly imprinted polymer has been developed for selective detection of an anticancer agent Etoposide (ETP). The sensor was prepared by electropolymerization via cyclic voltammetry (CV) of pyrrole onto a glassy carbon electrode (GCE) in the presence of ETP molecules. The extraction of ETP molecules embedded in the polymeric matrix was carried out by overoxidation in sodium hydroxide medium using CV. Various important parameters affecting the performance of the imprinted film (MIP) coated sensor were studied and optimized using differential pulse voltammetry (DPV). Under optimal conditions, the sensor response exhibited a linear dependence on ETP concentration (R2= 0.999) over the range 5.0×10−7M – 1.0×10−5M with a LOD (3σ/m) of 2.8×10−9M. The precision (% RSD, n=6) of the proposed sensor for intra- and interdays was found to be 0.84 and 2.46%, respectively. The selectivity of MIP/GCE sensor toward ETP was investigated in the presence of different interfering molecules including excipients and ETP metabolites. The developed sensor showed great recognition ability toward ETP and was successfully applied for its determination in injectable dosage forms and biological human fluids.
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