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多壁碳纳米管/全氟磺酸复合膜修饰电极作为同时测定昂丹司琼和吗啡的传感器

Multi-walled carbon nanotubes/Nafion composite film modified electrode as a sensor for simultaneous determination of ondansetron and morphine.

作者信息

Nigović Biljana, Sadiković Mirela, Sertić Miranda

机构信息

University of Zagreb, Faculty of Pharmacy and Biochemistry, A. Kovacica 1, 10000 Zagreb, Croatia.

University of Zagreb, Faculty of Pharmacy and Biochemistry, A. Kovacica 1, 10000 Zagreb, Croatia.

出版信息

Talanta. 2014 May;122:187-94. doi: 10.1016/j.talanta.2014.01.026. Epub 2014 Jan 31.

Abstract

The electrochemical behavior of ondansetron was studied on the multi-walled carbon nanotubes/Nafion polymer composite modified glassy carbon electrode (MWCNTs-Nafion/GCE). The oxidation peak potential was shifted from 1.32 V to 1.18 V compared to the bare electrode indicating excellent electrocatalytic activity of immobilized film toward drug molecule. The modified electrode exhibited a remarkable enhancement effect on voltammetric response due to the synergistic effect of nanomaterial and cation-exchange polymer on the electron transfer rate, the effective electrode area and the accumulation capability. After optimizing the experimental parameters, adsorptive stripping procedure was used for the determination of ondansetron in pharmaceutical formulation. The results were satisfactory in comparison with those obtained by high-performance liquid chromatography. In addition, the MWCNTs-Nafion/GCE exhibited high selectivity in the voltammetric measurements of ondansetron and co-administrated drug morphine with potential difference of 430 mV. The response peak currents had linear relationship with drug concentration in the range of 1.0 × 10(-7)-5.0 × 10(-6)M and 1.0 × 10(-7)-4.0 × 10(-6)M with detection limits 3.1 × 10(-8) and 3.2 × 10(-8)M for ondansetron and morphine, respectively. The electrode was successfully applied for simultaneous electrochemical sensing of both drugs in human serum samples after selective accumulation at the electrode surface.

摘要

在多壁碳纳米管/全氟磺酸聚合物复合修饰玻碳电极(MWCNTs-Nafion/GCE)上研究了昂丹司琼的电化学行为。与裸电极相比,氧化峰电位从1.32 V移至1.18 V,这表明固定化膜对药物分子具有优异的电催化活性。由于纳米材料和阳离子交换聚合物在电子转移速率、有效电极面积和富集能力方面的协同作用,修饰电极对伏安响应表现出显著的增强效果。优化实验参数后,采用吸附溶出法测定药物制剂中的昂丹司琼。与高效液相色谱法得到的结果相比,结果令人满意。此外,MWCNTs-Nafion/GCE在昂丹司琼和共同给药的药物吗啡的伏安测量中表现出高选择性,电位差为430 mV。响应峰电流与药物浓度在1.0×10(-7)-5.0×10(-6)M和1.0×10(-7)-4.0×10(-6)M范围内呈线性关系,昂丹司琼和吗啡的检测限分别为3.1×10(-8)和3.2×10(-8)M。该电极在选择性富集于电极表面后,成功应用于人血清样品中两种药物的同时电化学传感。

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