Jin Jianyang, Wang Zhiying, Lin Jinsheng, Zhu Wenquan, Gu Chengzhen, Li Min
Center of Excellence for Modern Analytical Technologies (CEMAT), Huahai Pharmaceutical Co., Ltd, Xunqiao, Linhai, Zhejiang 317024, PR China.
Waters Corp., Shanghai, PR China.
J Pharm Biomed Anal. 2017 Jun 5;140:281-286. doi: 10.1016/j.jpba.2017.02.059. Epub 2017 Mar 12.
Unpredictable degradation of Ezetimibe solutions in pure acetonitrile occurs when they are stored in glass HPLC vials. The occurrence of the two main degradation peaks and one minor peak was unpredictable at the time of each sample preparation and over time, it appeared that approximately 15% of the sample solutions in glass HPLC vials would eventually show the degradation peaks. Once the degradation peaks occurred in a particular vial, typically within 24h, they would keep growing until reaching a total yield of about 4-5%. Through a comprehensive investigation, it is determined that the solution degradation is caused by a base-catalyzed process, during which ezetimibe undergoes (1) dimerization to form two dimeric impurities, which have not been reported in the literature, and (2) to a less degree, isomerization to produce an isomeric impurity that has been reported before.
依折麦布溶液保存在玻璃高效液相色谱(HPLC)小瓶中时,在纯乙腈中会发生不可预测的降解。每次样品制备时以及随着时间推移,两个主要降解峰和一个次要峰的出现都是不可预测的,似乎玻璃HPLC小瓶中约15%的样品溶液最终会出现降解峰。一旦降解峰在特定小瓶中出现,通常在24小时内,它们会持续增长,直至总产率达到约4-5%。通过全面调查,确定溶液降解是由碱催化过程引起的,在此过程中依折麦布会发生:(1)二聚化形成两种尚未见文献报道的二聚体杂质;(2)程度较小的异构化,生成一种之前已报道过的异构杂质。