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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 >novel nanocomposite based on gold nanoparticles loaded on acetylene black for electrochemical sensing of the anticancer drug topotecan in the presence of high concentration of uric acid
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novel nanocomposite based on gold nanoparticles loaded on acetylene black for electrochemical sensing of the anticancer drug topotecan in the presence of high concentration of uric acid

机译:基于金纳米颗粒的新型纳米复合材料,在高浓度尿酸存在下抗癌药物拓扑替康电化学传感

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摘要

In this study, a new voltammetric nanosensor was constructed by the decoration of acetylene black (AB) with gold nanoparticles (AuNPs) using glassy carbon paste (GCP) as a cross linker (nano-AB-AuNPs/GCPE) for determination of anticancer topotecan (TPT) drug. Moreover, from the response characteristics of cyclic voltammetry (CV) and square wave voltammetry (SWV), it was observed that TPT could be effectively accumulated at nano-AB-AuNPs/GCPE and resulted in a sensitive anodic peak current in PBS of pH 6.0. The surface area, electrical conductivity and catalytic performance of the modified electrode improved on account of the formation of nano-AB-AuNPs materials, thereby enhancing the sensitivity of the nanosensor. Under optimal conditions, a novel electrochemical method based on the nano-AB-AuNPs/GCPE sensor with high selectivity, high sensitivity and high anti-interference ability was developed for the determination of TPT. Furthermore, the electrochemical oxidation of TPT reveals an excellent linearity in the range of 1.99 x 10(-9) to 6.71 x 10(-7) M of TPT with a detection limit of 1.64 x 10(-11) M (6.91 x 10(-3) ng/mL). The TPT as a preconcentration agent showed chemical selectivity, so, the nanosensor was successfully applied for the determination of TPT in the presence of high concentrations of uric acid. Moreover, the method was employed efficiently to detect TPT in blood serum and urine samples, with satisfactory recoveries ranging from 98.16% to 100.76%.
机译:在这项研究中,一个新的伏安纳米传感器是由乙炔黑的装饰(AB)使用玻璃碳糊(GCP)作为交联剂(纳米-AB-的AuNP / GCPE),用于确定抗癌托泊替康的金粒子(AuNPs)构造(TPT)药物。此外,从循环伏安法(CV)和方波伏安法(SWV)的响应特性,观察到TPT可以在纳米AB-AUNPS / GCPE上有效地积聚,并导致pH6.0的PBS中的敏感阳极峰值电流。根据纳米AB-AUNP材料的形成,改性电极的表面积,电导率和催化性能改善,从而提高了纳米传感器的敏感性。在最佳条件下,基于以高选择性,高灵敏度和高抗干扰能力纳米AB-的AuNP / GCPE传感器的新颖的电化学方法对于TPT的测定开发的。此外,TPT的电化学氧化显示在TPT的1.99×10(-9)至6.71×10(-7)m的范围内的优异线性度,检出限为1.64×10(-11)m(6.91 x 10 (-3)Ng / ml)。 TPT作为前浓缩剂显示出化学选择性,因此,在高浓度的尿酸存在下成功地施加纳米传感器以确定TPT。此外,该方法有效地使用血清和尿液样品中的TPT,令人满意的回收率范围为98.16%至100.76%。

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