Department of Pharmaceutical Sciences and Drug Research, Punjabi University, Patiala 147002, India.
J Pharm Biomed Anal. 2013 Nov;85:123-31. doi: 10.1016/j.jpba.2013.07.002. Epub 2013 Jul 24.
Idarubicin was subjected to forced degradation under the ICH recommended conditions of hydrolysis, oxidation, dry heat and photolysis to characterize its possible impurities and/or degradation products. The drug was found unstable to acid hydrolysis at 85°C and to alkaline hydrolysis, and oxidation at room temperature. The hydrolytic and oxidative degradation products were resolved with gradient and isocratic elution, respectively on an Inertsil RP18 (250 mm × 4.6mm; 5 μ) column with HCOONH4 (20mM, pH 3.0) and acetonitrile. The drug degraded to two products (O-I and O-II) in oxidative condition, two products (K-I and K-II) in alkaline hydrolytic, and one product (A-I) in acidic hydrolytic conditions. The purity of each in the LC-UV chromatogram was ascertained through LC-PDA analysis. The products were characterized through +ESI-MS(n) studies on the drug and LC-MS-TOF studies on the degraded drug solutions. Based on the multistage mass fragmentation pattern of idarubicin and accurate mass analysis of the degradation products, the O-I, O-II and A-I were characterized as desacetylidarubicin hydroperoxide, desacetylidarubicin and deglucosaminylidarubicin, respectively. The products K-I and K-II were not characterized due to their low concentrations and/or extremely weak ionization. The mechanisms of degradation of idarubicin to these products were proposed and discussed.
柔红霉素在 ICH 推荐的水解、氧化、干热和光解条件下进行强制降解,以确定其可能的杂质和/或降解产物。研究发现,该药物在 85°C 时对酸水解和碱性水解不稳定,在室温下对氧化不稳定。采用梯度洗脱和等度洗脱分别在 Inertsil RP18(250mm×4.6mm;5μm)柱上分离水解和氧化降解产物,流动相分别为 HCOONH4(20mM,pH3.0)和乙腈。在氧化条件下,该药物降解为两种产物(O-I 和 O-II),在碱性水解条件下降解为两种产物(K-I 和 K-II),在酸性水解条件下降解为一种产物(A-I)。通过 LC-PDA 分析在 LC-UV 色谱图中确定每种产物的纯度。通过对药物进行 +ESI-MS(n)研究和对降解药物溶液进行 LC-MS-TOF 研究,对产物进行了表征。基于柔红霉素的多级质谱碎裂模式和降解产物的精确质量分析,将 O-I、O-II 和 A-I 分别鉴定为去乙酰柔红霉素过氧化物、去乙酰柔红霉素和去氨基葡萄糖基柔红霉素。由于浓度低和/或电离极弱,未能对产物 K-I 和 K-II 进行表征。提出并讨论了柔红霉素降解为这些产物的机制。