Department of Chemistry, School of Science, GITAM (Deemed to be University) Hyderabad, Hyderabad, India.
Analytical Research and Development, YunNan Longjin Careyou Pharmaceutical Co., Ltd, Kunming City, China.
Biomed Chromatogr. 2022 Jun;36(6):e5363. doi: 10.1002/bmc.5363. Epub 2022 Apr 6.
Favipiravir finished dosage was approved for emergency use in many countries to treat SARS-CoV-2 patients. A specific, accurate, linear, robust, simple, and stability-indicating HPLC method was developed and validated for the determination of degradation impurities present in favipiravir film-coated tablets. The separation of all impurities was achieved from the stationary phase (Inert sustain AQ-C18, 250 × 4.6 mm, 5-μm particle) and mobile phase. Mobile phase A contained KH PO buffer (pH 2.5 ± 0.05) and acetonitrile in the ratio of 98:2 (v/v), and mobile phase B contained water and acetonitrile in the ratio of 50:50 (v/v). The chromatographic conditions were optimized as follows: flow rate, 0.7 mL/min; UV detection, 210 nm; injection volume, 20 μL; and column temperature, 33°C. The proposed method was validated per the current International Conference on Harmonization Q2 (R1) guidelines. The recovery study and linearity ranges were established from the limit of quantification to 150% optimal concentrations. The method validation results were found to be between 98.6 and 106.2% for recovery and r = 0.9995-0.9999 for linearity of all identified impurities. The method precision results were achieved below 5% of relative standard deviation. Forced degradation studies were performed in chemical and physical stress conditions. The compound was sensitive to chemical stress conditions. During the study, the analyte degraded and converted to unknown degradation impurities, and its molecular mass was found using the LC-MS technique and established degradation pathways supported by reaction of mechanism. The developed method was found to be suitable for routine analysis of research and development and quality control.
法匹拉韦的终末剂量已在许多国家获得批准,可用于治疗 SARS-CoV-2 患者。本研究开发并验证了一种专属性强、准确、线性、耐用、简便且能同时显示稳定性的 HPLC 方法,用于测定法匹拉韦薄膜包衣片中的降解杂质。所有杂质均能在固定相(Inert sustain AQ-C18,250×4.6mm,5μm 粒径)和流动相之间实现分离。流动相 A 含有 KH 2 PO 4 缓冲液(pH 2.5±0.05)和乙腈,比例为 98:2(v/v),流动相 B 含有水和乙腈,比例为 50:50(v/v)。优化后的色谱条件如下:流速 0.7mL/min;UV 检测波长 210nm;进样量 20μL;柱温 33℃。该方法按照现行的国际人用药品注册技术协调会(ICH)Q2(R1)指导原则进行了验证。回收率研究和线性范围在定量下限至 150%最佳浓度范围内建立。方法验证结果表明,所有鉴定杂质的回收率在 98.6%至 106.2%之间,线性相关系数 r 在 0.9995-0.9999 之间。方法精密度结果的相对标准偏差均低于 5%。在化学和物理稳定性研究中,化合物对化学稳定性研究条件敏感。在研究过程中,分析物发生降解并转化为未知降解杂质,其分子量通过 LC-MS 技术确定,并根据反应机制建立了降解途径。该方法适用于研究和开发以及质量控制的常规分析。