Luliconazole: Stability-indicating LC method, structural elucidation of major degradation product by HRMS and in silico studies

D. Porto, Lisiane Bajerski, M. D. Malesuik, J. B. Azeredo, F. R. Paula, C. S. Paim
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Abstract

Aim: A new stability-indicating liquid chromatography method was developed and validated for the quantitative determination of luliconazole. Materials and methods: Preliminary forced degradation study demonstrated an additional peak of the degradation product at the same retention time to the drug, due to this, the method was developed optimizing the chromatographic conditions to provide sufficient peak resolution (R ≥ 2). The experimental design was evaluated to assess the robustness and the best chromatographic conditions to be used for the validation. Methodology: Luliconazole solutions were exposed to various stress conditions to evaluate the method indication stability, in which the degradation product (DP-1) formed was isolated, identified, and evaluated in silico to predict degradation pathway and toxicity. The procedure was validated by robustness, selectivity, linearity, precision, and accuracy. Liquid chromatography was performed in a Phenomenex® RP-18 column with a mixture of acetonitrile and 0.3% (v/v) triethylamine solution as a mobile phase in isocratic elution. Results and conclusions: The method demonstrated robustness, good recovery, precision, linear response over a range from 5.0 to 40.0 μg.mL-1, and to be stability indicating. The alkaline stress condition resulted in the formation of DP-1. hrms studies identified this product as an hydroxyacetamide derivative, and in silico studies did not show toxic potential.
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Luliconazole:稳定性指示的LC方法,主要降解产物的HRMS结构解析和硅研究
目的:建立一种新的稳定性指示液相色谱法定量测定露立康唑。材料和方法:初步的强制降解研究表明,降解产物在与药物相同的保留时间内出现了一个额外的峰,因此,优化了色谱条件,以提供足够的峰分辨率(R≥2)。对实验设计进行了评估,以评估稳健性和最佳色谱条件用于验证。方法:将卢立康唑溶液暴露于不同的应激条件下,评价方法的适应度稳定性,其中形成的降解产物(DP-1)进行分离、鉴定和计算机评价,预测降解途径和毒性。该方法具有鲁棒性、选择性、线性、精密度和准确度。色谱柱为Phenomenex®RP-18,流动相为乙腈和0.3% (v/v)三乙胺溶液,等密度洗脱。结果与结论:该方法在5.0 ~ 40.0 μg范围内具有良好的鲁棒性、良好的回收率、精密度和线性响应。mL-1,并作为稳定性指示。碱性胁迫条件导致DP-1的形成。HRMS研究确定该产品为羟基乙酰胺衍生物,硅研究未显示毒性潜力。
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