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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >Degradation studies of quetiapine fumarate by liquid chromatography–diode array detection and tandem mass spectrometry methods
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Degradation studies of quetiapine fumarate by liquid chromatography–diode array detection and tandem mass spectrometry methods

机译:液相色谱 - 二极管阵列检测和串联质谱法的喹硫吡状物的降解研究

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摘要

Abstract Quetiapine fumarate (QUE) is an antipsychotic agent with a chemical structure that is susceptible to degradation; therefore, it is important to study its stability using appropriate analytical tools. Knowledge of the stability profile of a drug is important because chemical degradation of its active component often results in a loss of potency, affecting its efficacy and safety. This current work reports degradation studies of QUE as drug substance, under different stress conditions such as oxidation, hydrolysis, heat, humidity and photolysis, by a stability‐indicating LC method. The chemical stability was evaluated using a simple HPLC/diode array detection method, with a core‐shell C 18 column under isocratic conditions, which allows the separation of all primary degradation products (DPs) in a short run time. QUE was mainly degraded under oxidative and hydrolytic conditions, with the formation of three and two DPs, respectively, which were identified by electrospray ionization–tandem mass spectrometry. The method was properly validated in terms of linearity, accuracy, precision, selectivity, robustness and quantitation limit. Commercial tablets containing 25?mg of QUE were quantified, with results obtained within the United States Pharmacopeia limits. The proposed method is suitable to assess the stability and perform routine analysis of QUE in pharmaceutical samples.
机译:摘要喹硫吡状物(que)是一种抗精神病药剂,具有易受降解的化学结构;因此,使用适当的分析工具研究其稳定性非常重要。了解药物的稳定性曲线是重要的,因为其活性成分的化学降解通常导致效力丧失,影响其功效和安全性。本前的工作报告了que作为药物的降解研究,在不同的应力条件下,通过稳定性指示的LC方法如氧化,水解,热,湿度和光解,如氧化,水解,热,湿度和光解。使用简单的HPLC /二极管阵列检测方法评估化学稳定性,在等离心条件下具有核心壳C 18柱,其允许在短暂的时间内分离所有初级降解产物(DPS)。 QUE主要在氧化和水解条件下降解,分别形成三和两个DPS,其通过电喷雾电离 - 串联质谱法鉴定。在线性,准确性,精度,选择性,稳健性和定量限制方面妥善验证该方法。含有25μmmg阙的商业片剂量化,在美国药典范围内获得的结果。该方法适用于评估药物样品中Que的稳定性并进行常规分析。

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