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乙二胺四乙酸盐修饰碳糊电极用于药物片剂中茶碱的方波伏安法测定。

EDTA salt modified carbon paste electrode for square wave voltammetric determination of theophylline in pharmaceutical tablet formulation.

机构信息

Debre Markos University, Debre Markos, Ethiopia.

Debre Tabor University, Debra Tabor, Ethiopia.

出版信息

PLoS One. 2022 Jun 10;17(6):e0255700. doi: 10.1371/journal.pone.0255700. eCollection 2022.

Abstract

In this study, a square wave voltammetric method for determination of theophylline in tablet formulation based on EDTA salt modified carbon paste electrode is presented. CV, FT-IR, and EIS results confirmed modification of the carbon paste with EDTA salt. In contrast to the unmodified carbon paste electrode, the modified carbon paste electrode showed irreversible oxidation of theophylline with considerable current enhancement. Investigation of the effect of scan rate on the Ip and Ep response of the modified electrode for theophylline revealed predominantly diffusion controlled oxidation kinetics. Under the optimized conditions, square wave oxidative peak current of theophylline in pH 7.0 PBS showed linear dependence on concentration in the range 10-200 μM with determination coefficient (R2), limit of detection, and limit of quantification of 0.99782, 0.0257 μM, and 0.0857 μM, respectively. Detection of an amount of theophylline in the analyzed tablet formulation with 1.85% error from its nominal content (120 mg/tablet) confirmed the accuracy of the developed method. Spike and interference recovery results of 98.59%, and 95.7-100%, respectively validated the applicability of the developed method for determination of theophylline content in tablet samples.

摘要

本研究提出了一种基于乙二胺四乙酸盐修饰碳糊电极的方波伏安法测定片剂中茶碱的方法。CV、FT-IR 和 EIS 结果证实了 EDTA 盐对碳糊的修饰。与未修饰的碳糊电极相比,修饰后的碳糊电极对茶碱表现出不可逆的氧化,电流显著增强。研究表明,扫描速率对修饰电极上茶碱的 Ip 和 Ep 响应的影响主要是扩散控制的氧化动力学。在优化条件下,pH 7.0 PBS 中茶碱的方波氧化峰电流在 10-200 μM 范围内呈线性关系,测定系数(R2)、检测限和定量限分别为 0.99782、0.0257 μM 和 0.0857 μM。用该方法对分析片剂制剂中的茶碱含量进行测定,其含量与名义含量(120mg/片)的误差为 1.85%,证实了该方法的准确性。98.59%的加标回收率和 95.7-100%的干扰回收率验证了该方法在片剂样品中茶碱含量测定中的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f043/9187066/e8ba94ed10c7/pone.0255700.g001.jpg

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