首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Rapid structure elucidation of drug degradation products using mechanism-based stress studies in conjunction with LC-MS(n) and NMR spectroscopy: identification of a photodegradation product of betamethasone dipropionate.
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Rapid structure elucidation of drug degradation products using mechanism-based stress studies in conjunction with LC-MS(n) and NMR spectroscopy: identification of a photodegradation product of betamethasone dipropionate.

机译:使用基于机理的应力研究与LC-MS(n)和NMR光谱法一起快速分析药物降解产物的结构:鉴定倍他米松二丙酸酯的光降解产物。

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摘要

Betamethasone dipropionate is an active pharmaceutical ingredient (API) that is used in various dosage forms of finished products for the treatment of inflammatory disorders. An unknown degradant was observed during a solution stability study of betamethasone dipropionate. An approach that combines LC-MS(n), mechanism-based stress studies, semi-preparative HPLC purification and structure elucidation by NMR spectroscopy was used to identify the unknown species. The key step of this approach is the design of relevant stress studies based on the plausible degradation mechanism that is revealed by the informative LC-MS(n) analysis. The appropriately designed mechanism-based stress studies not only verify the degradation mechanism but also produce enough quantities of the unknown species for further structure elucidation/confirmation by NMR spectroscopy. With this strategy, the unknown degradant was rapidly identified as lumibetametasone dipropionate, a photodegradation product of betamethasone dipropionate.
机译:倍他米松二丙酸酯是一种活性药物成分(API),用于各种剂型的最终产品中,用于治疗炎症。倍他米松二丙酸酯的溶液稳定性研究期间观察到未知的降解物。结合了LC-MS(n),基于机理的应力研究,半制备性HPLC纯化和NMR光谱进行结构解析的方法来鉴定未知物种。这种方法的关键步骤是基于合理的降解机理设计相关的应力研究,该机理由信息量丰富的LC-MS(n)分析显示。适当设计的基于机理的应力研究不仅可以验证降解机理,还可以产生足够数量的未知物质,以便通过NMR光谱进一步阐明/确认结构。通过这种策略,迅速将未知降解物鉴定为倍他米松二丙酸酯的光降解产物鲁米他米松二丙酸酯。

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