Zhejiang University of Technology, Hangzhou 310014, China; Zhejiang Institute for Food and Drug Control, Hangzhou 310052, China.
Zhejiang University of Technology, Hangzhou 310014, China.
J Pharm Biomed Anal. 2018 Nov 30;161:399-406. doi: 10.1016/j.jpba.2018.08.055. Epub 2018 Aug 27.
A novel HPLC method for the determination of the impurities in desonide cream was established and validated for the further improvement of the official monograph in USP. Desonide was well resolved from the photodegradation impurity, which overlapped with desonide in USP method. The method was validated in accordance to the regulatory guidelines recommended by the International Conference on Harmonisation and this validation included specificity, limit of detection, limit of quantification, linearity and accuracy. Four degradation impurities in desonide cream were characterized by a trap-free two-dimensional liquid chromatography coupled to high resolution ion trap/time-of-flight mass spectrometry (2D LC-IT-TOF MS) in positive mode of electrospray ionization. Through the multiple heart-cutting 2D LC approach and online demineralization technique, the problem of incompatibility between non-volatile salt mobile phase and mass spectrometry was solved completely, and the TIC chromatogram of LC-MS could be in conformity with the LC chromatogram of the official analytical method in the peak sequence of impurities. In the first dimension, the column was Phenomenex Kinetex C8 (4.6 mm × 150 mm, 2.6 μm) with a non-volatile salt mobile phase. In the second dimension, the column was Shimadzu Shim-pack GISS C18 (50 mm × 2.1 mm, 1.9 μm) with a volatile salt mobile phase. The structures of four degradation impurities in desonide cream were deduced based on the HPLC-MS data. The established method in this study was simple and reliable for routine quality control of desonide cream.
建立了一种用于测定地奈德乳膏中杂质的新型 HPLC 方法,并对其进行了验证,以进一步完善 USP 中的官方专论。地奈德与 USP 方法中与地奈德重叠的光降解杂质得到了很好的分离。该方法按照国际协调会议推荐的监管指南进行了验证,该验证包括专属性、检测限、定量限、线性和准确性。采用无阱二维液相色谱-高分辨离子阱/飞行时间质谱联用技术(2D LC-IT-TOF MS),在正离子模式下,对地奈德乳膏中的 4 种降解杂质进行了特征化。通过多维中心切割 2D LC 方法和在线去矿物质技术,完全解决了非挥发性盐流动相与质谱不兼容的问题,LC-MS 的 TIC 色谱图与杂质峰序的官方分析方法的 LC 色谱图相符。在第一维中,使用 Phenomenex Kinetex C8(4.6mm×150mm,2.6μm)柱,采用非挥发性盐流动相。在第二维中,使用 Shimadzu Shim-pack GISS C18(50mm×2.1mm,1.9μm)柱,采用挥发性盐流动相。根据 HPLC-MS 数据推导出地奈德乳膏中 4 种降解杂质的结构。本研究建立的方法简单可靠,可用于地奈德乳膏的常规质量控制。