School of Pharmacy and Pharmaceutical Sciences, Trinity College, Dublin 2, Ireland.
J Pharm Biomed Anal. 2010 Nov 2;53(3):376-81. doi: 10.1016/j.jpba.2010.04.024. Epub 2010 May 4.
In this study the aqueous stability of bupropion was determined and the pH-degradation profile was obtained. The effects of hydrogen ion, solvent and hydroxide ion concentration are discussed with particular emphasis on the kinetics of degradation of bupropion. Kinetics and degradation of bupropion were determined by HPLC-UV and LC-MS analysis both utilising high pH chromatographic methods. Degradation of bupropion in aqueous solutions follows first-order reaction kinetics. The pH-degradation profile was determined using non-linear regression analysis. The micro- and macro-reaction constants for degradation are presented. Bupropion was most stable in aqueous solutions below pH 5. Degradation was catalyzed by water but mainly by hydroxide ion on the unionised form of bupropion. The energy of activation for decomposition in aqueous solution pH 10.7 I=0.055 was determined to be 53 kJ mol(-1) with a frequency factor of 6.43 x 10(10)s(-1). The degradants of bupropion were positively identified and a mechanism of degradation is proposed. The inherent instability of bupropion above pH 5 has implications for its therapeutic use, formulation, pharmacokinetics and use during analysis and storage.
本研究确定了盐酸安非他酮的水稳定性,并获得了其 pH 值降解曲线。讨论了氢离子、溶剂和氢氧根离子浓度的影响,特别强调了盐酸安非他酮的降解动力学。采用 HPLC-UV 和 LC-MS 分析,均利用高 pH 值色谱方法,对盐酸安非他酮的动力学和降解进行了测定。盐酸安非他酮在水溶液中的降解遵循一级反应动力学。通过非线性回归分析确定了 pH 值降解曲线。给出了降解的微观和宏观反应常数。盐酸安非他酮在 pH 值低于 5 的水溶液中最稳定。水的催化作用,但主要是盐酸安非他酮非离子形式的氢氧根离子的催化作用,导致了降解。在 pH 值为 10.7(I=0.055)的水溶液中,分解的活化能为 53 kJ/mol,频率因子为 6.43 x 10(10)s(-1)。鉴定了盐酸安非他酮的降解产物,并提出了一种降解机制。pH 值大于 5 时盐酸安非他酮的固有不稳定性对其治疗用途、制剂、药代动力学以及分析和储存期间的使用都有影响。