基于与喹哪嗪的电荷转移反应的阿托伐他汀分光光度测定法

Fatih Yi̇ği̇t, Nurettin Tarkan, Mehmet Akdeni̇z, Figen Erek, I. Aydin
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引用次数: 0

摘要

本研究开发了一种简便经济的分光光度法,用于测定片剂中的阿托伐他汀。该方法基于阿托伐他汀与喹哪嗪在甲醇介质中形成的蓝色电荷转移复合物。蓝色复合物在 573 纳米波长处具有最大吸光度。为了开发阿托伐他汀的定量分析方法,研究了溶剂类型、试剂浓度、反应时间和温度等参数对络合物吸光度的影响。结果表明,最佳 Quinz 溶液(0.5x10-³ M)为 3mL,最佳反应温度为室温。拟议方法的比尔定律范围为 10-100 µg.mL-1。该方法的最低检测限和最低定量限分别为 1.49 µg.mL-1 和 4.98 µg.mL-1。因此,该方法可用于片剂中阿托伐他汀的定量分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectrophotometric Determination of Atorvastatin Based on Charge Transfer Reaction with Quinalizarin
An easy and economical spectrophotometric method has been developed for the determination of atorvastatin from tablet formulation. This method is based on the formation of a blue-colored charge transfer complex of Atorvastatin with quinalizarin in methanol medium. The blue colored complex gives maximum absorbance at 573 nm. In order to develop the quantitative analysis method of atorvastatin, several parameters such as the type of solvent, the effect of reagent concentration, and the reaction time and temperature on absorbance of complex were investigated. It was determined that the optimum Quinz solution (0.5x10-³ M) was 3mL and the optimum temperature of the reaction was room temperature. Beer’s law range of proposed method is found 10-100 µg.mL-1. LOD and LOQ of the proposed method were found as 1.49 µg.mL-1 and 4.98 µg.mL-1, respectively. As a result, this proposed method can be used in the quantitative analysis of atorvastatin in tablet formulations
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