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电位动力学聚(间苯二酚)修饰玻碳电极作为伏安传感器同时测定药物制剂和生物流体样品中的头孢氨苄和头孢羟氨苄

Potentiodynamic Poly(resorcinol)-Modified Glassy Carbon Electrode as a Voltammetric Sensor for Determining Cephalexin and Cefadroxil Simultaneously in Pharmaceutical Formulation and Biological Fluid Samples.

作者信息

Kassa Adane, Amare Meareg, Benor Amare, Tigineh Getinet Tamiru, Beyene Yonas, Tefera Molla, Abebe Atakilt

机构信息

Department of Chemistry, College of Natural and Computational Sciences, Debre Markos University, P.O. Box 269, Debre Markos, Ethiopia.

Department of Chemistry and Department of Physics, College of Science, Bahir Dar University, P.O. Box 79, Bahir Dar, Amhara, Ethiopia.

出版信息

ACS Omega. 2022 Sep 14;7(38):34599-34607. doi: 10.1021/acsomega.2c04514. eCollection 2022 Sep 27.

Abstract

This study covers the development of a fast, selective, sensitive, and stable method for the simultaneous determination of cephalosporins (cephalexin (CLN) and cefadroxil (CFL)) in biological fluids and tablet samples using potentiodynamic fabrication of a poly(resorcinol)-modified glassy carbon electrode (poly(reso)/GCE). The results of cyclic voltammetry and electrochemical impedance spectroscopy supported the modification of the GCE by a polymer layer that raised the electrode surface area and conductivity. At the poly(reso)/GCE, an irreversible oxidative peak with four- and fivefold current enhancement for CLN and CFL, respectively, at a substantially lower potential demonstrated the catalytic action of the modifier. Under optimized solution and parameters, the peak current response at the poly(reso)/GCE revealed a linear dependence on the concentration of CLN and CFL within the range 0.1-300 and 0.5-300 μM, respectively, with a limit of detection (LoD) of 3.12 and 8.7 nM, respectively. The levels of CLN in four selected tablet brands and CFL in two tablet brands were in the vicinity of 91.00-103.65% and 97.7-98.83%, respectively, of their nominal values. The recovery results for CLN in pharmaceutical samples were in the range of 99.00-100.67% and for CFL 97.9-99.75% and for blood serum and urine samples 99.55-100.55% and 99.33-100.34% for CLN and 97.13-100.60% and 96.73-102.50% for CFL, respectively. Interference recovery results with errors less than 4.81%, lower LoD, wider dynamic range, excellent recovery results, and good stability of the modifier compared to those for the previously reported methods validated the use of the poly(reso)/GCE for determining CLN and CFL simultaneously in various real samples.

摘要

本研究报道了一种快速、选择性好、灵敏且稳定的方法,该方法利用聚(间苯二酚)修饰玻碳电极(poly(reso)/GCE)的动电位制备,用于同时测定生物流体和片剂样品中的头孢菌素(头孢氨苄(CLN)和头孢羟氨苄(CFL))。循环伏安法和电化学阻抗谱的结果支持了聚合物层对玻碳电极的修饰,该修饰增加了电极表面积和电导率。在poly(reso)/GCE上,CLN和CFL分别在显著更低的电位下出现不可逆氧化峰,电流增强了四倍和五倍,这证明了修饰剂的催化作用。在优化的溶液和参数条件下,poly(reso)/GCE上的峰电流响应分别在0.1 - 300 μM和0.5 - 300 μM范围内对CLN和CFL的浓度呈线性依赖,检测限(LoD)分别为3.12和8.7 nM。四个选定片剂品牌中CLN的含量以及两个片剂品牌中CFL的含量分别在其标称值的91.00 - 103.65%和97.7 - 98.83%附近。药物样品中CLN的回收率在99.00 - 100.67%范围内,CFL的回收率在97.9 - 99.75%范围内;血清和尿液样品中CLN的回收率分别在99.55 - 100.55%和99.33 - 100.34%范围内,CFL的回收率分别在97.13 - 100.60%和96.73 - 102.50%范围内。与先前报道的方法相比,干扰回收率结果误差小于4.81%,检测限更低,动态范围更宽,回收率优异,修饰剂稳定性良好,这些都验证了poly(reso)/GCE可用于同时测定各种实际样品中的CLN和CFL。

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