Chen J, Zhang L H, Xu R J, Bu N J, Zhang L
Pharmazie. 2014 Apr;69(4):277-80.
Enalapril maleate (EM) is unstable in poorly designed tablet formulations. To improve the stability of EM, the degradation mechanism should be elucidated. In this study, we found that several commonly used excipients promoted the degradants of EM, particularly a diketopiperazine derivative (DKP). We propose two degradation pathways in which both acid and alkali can promote the formation of DKP, although previous reports suggested that DKP is produced mainly in acidic media. Based on the degradation pathways, we believe that subtle control of the microenvironmental pH can inhibit the formation of DKP. This was confirmed by the observation that the degradation rate became slower when certain organic acids were added to the binary mixtures of EM and excipient. The data showed that the stability of EM in the ternary mixtures was much higher than that in binary mixtures. It was further proved that tablets containing these organic acids produced less DKP after the accelerated test. We also found that the formation of DKP in tablets varied with different ratios of tartaric acid, which was used as a model organic acid. This illustrated that an optimum ratio of tartaric acid is required. These results indicated that the stability of EM in tablet formulation is closely associated with microenvironmental pH and the addition of a suitable organic acid based on the reaction mechanism is an effective strategy for improving the stability of EM.
马来酸依那普利(EM)在设计不佳的片剂配方中不稳定。为提高EM的稳定性,应阐明其降解机制。在本研究中,我们发现几种常用辅料会促进EM的降解产物生成,尤其是一种二酮哌嗪衍生物(DKP)。我们提出了两条降解途径,其中酸和碱均可促进DKP的形成,尽管先前的报告表明DKP主要在酸性介质中产生。基于这些降解途径,我们认为对微环境pH进行精细控制可抑制DKP的形成。当向EM与辅料的二元混合物中添加某些有机酸时降解速率变慢,这一观察结果证实了这一点。数据表明,EM在三元混合物中的稳定性远高于在二元混合物中的稳定性。进一步证明,含有这些有机酸的片剂在加速试验后产生的DKP较少。我们还发现,以酒石酸作为模型有机酸时,片剂中DKP的形成会因酒石酸比例不同而有所变化。这表明需要酒石酸的最佳比例。这些结果表明,EM在片剂配方中的稳定性与微环境pH密切相关,基于反应机制添加合适的有机酸是提高EM稳定性的有效策略。