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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Electrochemical mechanism and sensitive assay of antiretroviral drug Abacavir in biological sample using multiwalled carbon nanotube modified pyrolytic graphite electrode
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Electrochemical mechanism and sensitive assay of antiretroviral drug Abacavir in biological sample using multiwalled carbon nanotube modified pyrolytic graphite electrode

机译:多壁碳纳米管修饰的热解石墨电极对生物样品中抗逆转录病毒药物阿巴卡韦的电化学机理和敏感性测定

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摘要

Multiwalled carbon nanotube modified edge plane pyrolytic graphite electrode (MWCNT/EPPGE) was developed and implemented for the determination of antiretroviral drug Abacavir using differential pulse adsorptive stripping voltammetry (DP AdSV). Cyclic voltammogram showed two oxidation peaks located at +0.91 V and +1.10 V on (MWCNT/EPPGE). Dependency of peak potential and peak current on pH was investigated as details. The oxidation potentials affected by the pH indicating protons are involved in the electrochemical oxidation of Abacavir. Mass transport to the electrode surface was found as a combination of diffusion and adsorption which was concluded by studying the potential scan rate dependency of both peak currents. The oxidation mechanism was proposed using the obtained data and discussed. A large enhancement in both of the peak currents was observed with applying an accumulation step presenting the effect of adsorption. Peak currents showed a linear relation upon the Abacavir concentration within a range of 1 × 10~(-7)–2 × 10~(-5) M with (r = 0.999) for both peak responses. The method was fully validated related with selectivity, sensitivity, precision and accuracy studies. Abacavir was also determined with the proposed method in its pharmaceutical dosage forms and human serum samples. No interferences from the excipients of the dosage form or endogenous substances from biological material were found.
机译:开发并实施了多壁碳纳米管修饰的边缘平面热解石墨电极(MWCNT / EPPGE),用于使用差分脉冲吸附溶出伏安法(DP AdSV)测定抗逆转录病毒药物阿巴卡韦。循环伏安图显示(MWCNT / EPPGE)上的两个氧化峰位于+0.91 V和+1.10V。详细研究了峰电位和峰电流对pH的依赖性。受pH指示质子影响的氧化电势与阿巴卡韦的电化学氧化有关。发现质量转移到电极表面是扩散和吸附的结合,这是通过研究两个峰值电流的电位扫描速率依赖性得出的。利用获得的数据提出了氧化机理并进行了讨论。观察到施加吸收作用的累积步骤,观察到两个峰值电流都大大增强。峰值电流与阿巴卡韦浓度在1×10〜(-7)–2×10〜(-5)M的范围内呈线性关系,两个峰值响应的(r = 0.999)。该方法已通过选择性,灵敏度,精密度和准确性研究得到充分验证。阿巴卡韦也用所提出的方法测定了其药物剂型和人血清样品。没有发现来自剂型赋形剂或生物材料的内源性物质的干扰。

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