Wang Feng, Finnin Joshua, Tait Cassandra, Quirk Stephen, Chekhtman Igor, Donohue Andrew C, Ng Sarah, D'Souza Asha, Tait Russell, Prankerd Richard
Monash Institute of Pharmaceutical Sciences, Monash University (Parkville Campus), Parkville, Victoria 3052, Australia.
Kimberly-Clark Corporation, Roswell, Georgia 30022.
J Pharm Sci. 2016 Feb;105(2):773-785. doi: 10.1002/jps.24665. Epub 2016 Jan 29.
Degradation reactions on diclofenac-monoglycerides (3a,b), diclofenac-(p-hydroxybenzoate)-2-monoglyceride (3c), diclofenac (1), and diclofenac lactam (4) were performed at 37 °C in isotonic buffer solutions (apparent pH range 1-8) containing varying concentrations of acetonitrile (ACN). The concentration remaining of each analyte was measured versus time. Diclofenac-monoglycerides and diclofenac-(p-hydroxybenzoate)-2-monoglyceride (3c) were both found to undergo facile and complete hydrolysis in pH 7.4 isotonic phosphate buffer/10% ACN. Under mildly acidic, neutral or alkaline conditions, diclofenac-(p-hydroxybenzoate)-2-monoglyceride (3c) had the fastest hydrolysis rate (t1/2 = 3.23 h at pH 7.4), with simultaneous formation of diclofenac lactam (4) and diclofenac (1). Diclofenac-monoglycerides (3a,b) hydrolyzed more slowly under the same conditions, to again yield both diclofenac (1) and diclofenac lactam (4). There was also transesterification of diclofenac-2-monoglyceride (3b) to its regioisomer, diclofenac-1-monoglyceride (3a) across the pH range. Diclofenac was shown to be stable in neutral or alkaline conditions but cyclized to form the lactam (4) in acidic conditions. Conversely, the lactam (4) was stable under acidic conditions but was converted to an unknown species under alkaline or neutral conditions.
在37°C下,于含有不同浓度乙腈(ACN)的等渗缓冲溶液(表观pH范围为1 - 8)中对双氯芬酸单甘油酯(3a、b)、双氯芬酸 - (对羟基苯甲酸酯) - 2 - 单甘油酯(3c)、双氯芬酸(1)和双氯芬酸内酰胺(4)进行降解反应。测量每种分析物的剩余浓度随时间的变化。发现双氯芬酸单甘油酯和双氯芬酸 - (对羟基苯甲酸酯) - 2 - 单甘油酯(3c)在pH 7.4的等渗磷酸盐缓冲液/10% ACN中均能快速且完全水解。在轻度酸性、中性或碱性条件下,双氯芬酸 - (对羟基苯甲酸酯) - 2 - 单甘油酯(3c)的水解速率最快(在pH 7.4时t1/2 = 3.23小时),同时生成双氯芬酸内酰胺(4)和双氯芬酸(1)。在相同条件下,双氯芬酸单甘油酯(3a、b)水解较慢,同样生成双氯芬酸(1)和双氯芬酸内酰胺(4)。在整个pH范围内,双氯芬酸 - 2 - 单甘油酯(3b)还会发生酯交换反应生成其区域异构体双氯芬酸 - 1 - 单甘油酯(3a)。双氯芬酸在中性或碱性条件下稳定,但在酸性条件下环化形成内酰胺(4)。相反,内酰胺(4)在酸性条件下稳定,但在碱性或中性条件下会转化为未知物质。