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碳纳米结构修饰电极上一种抗癌及活性驱虫药物的电化学与密度泛函理论研究

Electrochemical and DFT study of an anticancer and active anthelmintic drug at carbon nanostructured modified electrode.

作者信息

Ghalkhani Masoumeh, Beheshtian Javad, Salehi Maryam

机构信息

Department of Chemistry, Faculty of Science, Shahid Rajaee Teacher Training University, Lavizan, Tehran, Iran.

Department of Chemistry, Faculty of Science, Shahid Rajaee Teacher Training University, Lavizan, Tehran, Iran.

出版信息

Mater Sci Eng C Mater Biol Appl. 2016 Dec 1;69:1345-53. doi: 10.1016/j.msec.2016.08.031. Epub 2016 Aug 17.

Abstract

The electrochemical response of mebendazole (Meb), an anticancer and effective anthelmintic drug, was investigated using two different carbon nanostructured modified glassy carbon electrodes (GCE). Although, compared to unmodified GCE, both prepared modified electrodes improved the voltammetric response of Meb, the carbon nanotubes (CNTs) modified GCE showed higher sensitivity and stability. Therefore, the CNTs-GCE was chosen as a promising candidate for the further studies. At first, the electrochemical behavior of Meb was studied by cyclic voltammetry and differential pulse and square wave voltammetry. A one step reversible, pH-dependent and adsorption-controlled process was revealed for electro-oxidation of Meb. A possible mechanism for the electrochemical oxidation of Meb was proposed. In addition, electronic structure, adsorption energy, band gap, type of interaction and stable configuration of Meb on the surface of functionalized carbon nanotubes were studied by using density functional theory (DFT). Obtained results revealed that Meb is weakly physisorbed on the CNTs and that the electronic properties of the CNTs are not significantly changed. Notably, CNTs could be considered as a suitable modifier for preparation of the modified electrode for Meb analysis. Then, the experimental parameters affecting the electrochemical response of Meb were optimized. Under optimal conditions, high sensitivity (b(Meb)=dIp,a(Meb)/d[Meb]=19.65μAμM(-1)), a low detection limit (LOD (Meb)=19nM) and a wide linear dynamic range (0.06-3μM) was resulted for the voltammetric quantification of Meb.

摘要

使用两种不同的碳纳米结构修饰玻碳电极(GCE)研究了抗癌及高效驱虫药甲苯咪唑(Meb)的电化学响应。尽管与未修饰的GCE相比,两种制备的修饰电极均改善了Meb的伏安响应,但碳纳米管(CNTs)修饰的GCE表现出更高的灵敏度和稳定性。因此,CNTs-GCE被选为进一步研究的有前景的候选物。首先,通过循环伏安法、差分脉冲伏安法和方波伏安法研究了Meb的电化学行为。揭示了Meb电氧化为一步可逆、pH依赖性和吸附控制的过程。提出了Meb电化学氧化的可能机理。此外,利用密度泛函理论(DFT)研究了Meb在功能化碳纳米管表面的电子结构、吸附能、带隙、相互作用类型和稳定构型。所得结果表明,Meb在CNTs上为弱物理吸附,且CNTs的电子性质没有显著变化。值得注意的是,CNTs可被视为制备用于Meb分析的修饰电极的合适修饰剂。然后,优化了影响Meb电化学响应的实验参数。在最佳条件下,Meb伏安定量分析获得了高灵敏度(b(Meb)=dIp,a(Meb)/d[Meb]=19.65μAμM(-1))、低检测限(LOD (Meb)=19nM)和宽线性动态范围(0.06 - 3μM)。

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