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Does Polyvinylpyrrolidone Improve the Chemical Stability of Cilazapril in Solid State?

机译:聚乙烯吡咯烷酮会提高西拉普利固态的化学稳定性吗?

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摘要

In this study a solid dispersion and a physical mixture of cilazapril (CIL) with a biopolymer - polyvinylpyrrolidone (PVP) as a carrier were prepared so as to investigate the effect of PVP on the stability of CIL. CIL is unstable in solid state and decomposes rapidly under humid conditions. It requires stabilization to ensure safety of its use. The studied CIL/PVP formulations were prepared by milling and evaporation technique. Their identity was confirmed by FT-IR method. The stability of CIL in the CIL/PVP formulations was assessed by forced ageing test under isothermic conditions using RP-HPLC. The influence of temperature (experimental conditions: RH 76.4% and T = 70, 75, 80, 85, and 90 oC) and the effect of relative humidity (experimental conditions: RH 25.0%, 50.9%, 60.9%, 66.5%, 76.4%, T = 90 °C) on the rate of CIL degradation were examined. It was established that the process of CIL decay in the studied forms followed first-order kinetics with the formation of one degradation product - cilazaprilat. The degradation rate constant of this reaction was lower than that for pure CIL. The energy of activation of the CIL degradation in the presence of PVP was higher than that of pure CIL. Furthermore, CIL incorporated into PVP exhibited lower sensitivity to moisture. Based on these data PVP was considered as a potential stabilizing substance for CIL-containing dosage forms.
机译:在这项研究中,制备了西拉普利(CIL)与生物聚合物-聚乙烯吡咯烷酮(PVP)为载体的固体分散体和物理混合物,以研究PVP对CIL稳定性的影响。 CIL在固态下不稳定,在潮湿条件下会迅速分解。它需要稳定以确保其使用的安全性。通过碾磨和蒸发技术制备了所研究的CIL / PVP制剂。通过FT-IR方法确认了它们的身份。通过在等温条件下使用RP-HPLC进行强制老化测试来评估CIL / PVP配方中CIL的稳定性。温度的影响(实验条件:RH 76.4%,T = 70、75、80、85和90 o C)和相对湿度的影响(实验条件:RH 25.0%,50.9%分别测定了CIL降解率的60.9%,66.5%,76.4%,T = 90°C)。已经确定,以所研究形式的CIL衰变过程遵循一级动力学,并形成了一种降解产物西拉普利拉。该反应的降解速率常数低于纯CIL的降解速率常数。在PVP存在下,CIL降解的活化能高于纯CIL。此外,掺入PVP中的CIL表现出对湿气的较低敏感性。根据这些数据,PVP被认为是含有CIL剂型的潜在稳定物质。

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