de Diego Marta, Campos Cristóbal, Correa Diana, Mennickent Sigrid, Godoy Ricardo, Vergara Carola
Department of Pharmacy, Faculty of Pharmacy, Universidad de Concepción, Concepción, Chile.
Biomed Chromatogr. 2019 Nov;33(11):e4655. doi: 10.1002/bmc.4655. Epub 2019 Sep 4.
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 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.
富马酸喹硫平(QUE)是一种化学结构易降解的抗精神病药物;因此,使用合适的分析工具研究其稳定性很重要。了解药物的稳定性概况很重要,因为其活性成分的化学降解通常会导致效力丧失,影响其疗效和安全性。本研究通过一种稳定性指示液相色谱法,报告了原料药QUE在不同应激条件下(如氧化、水解、加热、湿度和光解)的降解研究。使用简单的高效液相色谱/二极管阵列检测方法,在等度条件下使用核壳C柱评估化学稳定性,该方法能在短时间内分离所有主要降解产物(DPs)。QUE主要在氧化和水解条件下降解,分别形成三种和两种DPs,通过电喷雾电离串联质谱法进行鉴定。该方法在线性、准确性、精密度、选择性、稳健性和定量限方面得到了充分验证。对含有25mg QUE的市售片剂进行了定量分析,结果在美国药典规定的范围内。所提出的方法适用于评估QUE在药物样品中的稳定性并进行常规分析。