Department of Biochemistry, Shiraz University of Medical Sciences, Shiraz, Iran.
Talanta. 2010 Sep 15;82(4):1126-35. doi: 10.1016/j.talanta.2010.06.022. Epub 2010 Jun 25.
The electrocatalytic oxidation of metformin was studied on a nickel oxide nanotubes-carbon microparticles/Nafion nanocomposite, using cyclic voltammetry and chronoamperometry. In the presence of metformin, the anodic peak current of the Ni(II)/Ni(III) transition increased, followed by a decrease in the corresponding cathodic currents. Based on the results, the drug was oxidized on nickel oxide nanotubes via an electrocatalytic mechanism. The catalytic rate constant, the electron transfer coefficient and the diffusion coefficient involved in the electrocatalytic oxidation of the drug were reported. A sensitive and efficient amperometric method was presented for the analysis of the drug, and the corresponding analytical parameters were reported. For metformin, a detection limit of 0.45 micromol L(-1) was obtained. The proposed amperometric method was also applied to the analysis of commercial tablets and the results were in good agreement with the declared values. Also, the applicability of the method to the direct assays of the drug in human serum and urine and breast milk was described.
采用循环伏安法和计时安培法研究了在镍氧化物纳米管-碳微粒/Nafion 纳米复合物上,二甲双胍的电化学氧化。在二甲双胍存在的情况下,Ni(II)/Ni(III) 转变的阳极峰电流增加,随后相应的阴极电流减小。基于这些结果,药物通过电催化机制在镍氧化物纳米管上被氧化。报道了药物电催化氧化涉及的催化速率常数、电子转移系数和扩散系数。提出了一种用于分析该药物的灵敏有效的安培法,并报道了相应的分析参数。对于二甲双胍,检测限为 0.45 μmol L(-1)。所提出的安培法还应用于商业片剂的分析,结果与声明值吻合良好。此外,还描述了该方法在人血清、尿液和母乳中直接检测该药物的适用性。