Abiramasundari A, Joshi Rahul P, Jalani Hitesh B, Sharma Jayesh A, Pandya Dhaivat H, Pandya Amit N, Sudarsanam Vasudevan, Vasu Kamala K
Department of Medicinal Chemistry, B.V. Patel PERD Centre, Ahmedabad, Gujarat 380054, India.
J Pharm Anal. 2014 Dec;4(6):374-383. doi: 10.1016/j.jpha.2014.01.002. Epub 2014 Jan 25.
The stability of the drug actarit was studied under different stress conditions like hydrolysis (acid, alkaline and neutral), oxidation, photolysis and thermal degradation as recommended by International Conference on Harmonization (ICH) guidelines. Drug was found to be unstable in acidic, basic and photolytic conditions and produced a common degradation product while oxidative stress condition produced three additional degradation products. Drug was impassive to neutral hydrolysis, dry thermal and accelerated stability conditions. Degradation products were identified, isolated and characterized by different spectroscopic analyses. Drug and the degradation products were synthesized by a new route using green chemistry. The chromatographic separation of the drug and its impurities was achieved in a phenomenex luna C18 column employing a step gradient elution by high performance liquid chromatography coupled to photodiode array and mass spectrometry detectors (HPLC-PDA-MS). A specific and sensitive stability-indicating assay method for the simultaneous determination of the drug actarit, its process related impurities and degradation products was developed and validated.
按照国际协调会议(ICH)指南的建议,研究了药物阿扎立特在不同应力条件下的稳定性,如水解(酸性、碱性和中性)、氧化、光解和热降解。发现该药物在酸性、碱性和光解条件下不稳定,并产生一种常见的降解产物,而氧化应激条件下会产生另外三种降解产物。该药物对中性水解、干热和加速稳定性条件不敏感。通过不同的光谱分析对降解产物进行了鉴定、分离和表征。采用绿色化学新方法合成了药物及其降解产物。使用配备光电二极管阵列和质谱检测器的高效液相色谱(HPLC-PDA-MS),通过梯度洗脱,在phenomenex luna C18柱上实现了药物及其杂质的色谱分离。开发并验证了一种同时测定药物阿扎立特及其工艺相关杂质和降解产物的特异性和灵敏性的稳定性指示测定方法。