首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Au/Pd@rGO nanocomposite decorated with poly (L-Cysteine) as a probe for simultaneous sensitive electrochemical determination of anticancer drugs, Ifosfamide and Etoposide
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Au/Pd@rGO nanocomposite decorated with poly (L-Cysteine) as a probe for simultaneous sensitive electrochemical determination of anticancer drugs, Ifosfamide and Etoposide

机译:Au / Pd @ rgo纳米复合材料用聚(l-cysteine)装饰为探针,用于同时敏感的电化学测定抗癌药物,Ifosfamide和etoposide

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摘要

The simultaneous measurement of the concentration of anticancer drugs with a fast, sensitive and accurate method in biological samples is a challenge for better monitoring of drug therapy and better determine the pharmacokinetics. An electrochemical sensor was developed for the simultaneous determination of anticancer drugs, Ifosfamide (IFO) and Etoposide (ETO) based on pencil graphite electrode modified with Au/Pd@rGO nanocomposite decorated with poly (L-Cysteine). Cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) were utilized to study the properties of the modified electrode. The electrochemical behavior of IFO and ETO on the Au/Pd@rGO@p(L-Cys) modified electrode was investigated by cyclic voltammetry and differential pulse voltammetry (DPV) techniques and the obtained results confirmed its efficiency for the individual and simultaneous sensing of IFO and ETO. After optimization of electrochemical parameters, the fabricated sensor presented excellent performance in simultaneous determination of IFO and ETO with a wide linear range from 0.10 to 90.0 mu M and 0.01 to 40.0 mu M and low detection limits (3 S-b/m) of 9.210 nM and 0.718 nM, respectively. In addition, this study proved that the constructed sensor could be useful to simultaneous analysis of IFO and ETO in biological samples and pharmaceutical compounds.
机译:在生物样品中具有快速,敏感和准确的方法的同时测量抗癌药物的浓度是一种挑战,以便更好地监测药物治疗,更好地确定药代动力学。开发了一种电化学传感器,用于同时测定基于用聚(L-半胱氨酸)装饰的Au / Pd @ rgo纳米复合材料的铅笔石墨电极的抗癌药物,Ifosfamide(IFO)和依托皂苷(EtO)。利用循环伏安法(CV)和电化学阻抗光谱(EIS)研究改性电极的性质。通过循环伏安法和差分脉冲伏安法(DPV)技术研究了IFO和ETO对Au / Pd @ rgo @ p(l-cys)改性电极的电化学行为,并且获得的结果证实了其对个人和同时感应的效率ifo和eto。在优化电化学参数之后,制造的传感器在同时测定IFO和ETO时呈现出优异的性能,宽线性范围为0.10至90.0μm和0.01至40.0μm,低检测限(3 sb / m)和9.210nm分别为0.718纳米。此外,该研究证明,构建的传感器可用于在生物样品和药物化合物中同时分析IFO和ETO。

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