首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >The role of light anhydrous silicic acid on physical stability of troglitazone solid dispersion under humidified conditions
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The role of light anhydrous silicic acid on physical stability of troglitazone solid dispersion under humidified conditions

机译:轻质无水硅酸在湿润条件下对曲格列酮固体分散体物理稳定性的作用

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摘要

The aim of this study was to confirm whether light anhydrous silicic acid (Aerosil) could exhibit a stabilizing effect on the physical stability of solid dispersion under humidified conditions. Ternary solid dispersions consist of 50% troglitazone, and various ratios of polyvinyl pyrrolidone and Aerosil were prepared using the co-milling method and then evaluated for their crystallizing behavior under storage conditions. The results showed that Aerosil has a stabilizing effect against crystallizing in the dihydrate of troglitazone under humidified conditions and has an appropriate ratio range (Troglitazone/PVP/Aero-sil = 50/30-20/20-30) in the ternary solid dispersion, when considering total quality satisfaction such as physical stability and dissolution. Furthermore, it was found that hydrophobized Aerosil R805 has a stronger stabilizing effect than hydrophilic Aerosil 200. The stabilizing mechanism was discussed based on the comparative results and possible molecular interaction.
机译:这项研究的目的是确认轻质无水硅酸(Aerosil)是否可以在加湿条件下对固体分散体的物理稳定性表现出稳定作用。三元固体分散体由50%曲格列酮组成,并使用共同研磨法制备各种比例的聚乙烯吡咯烷酮和Aerosil,然后评估其在储存条件下的结晶行为。结果表明,Aerosil在潮湿条件下对曲格列酮的二水合物具有稳定的结晶作用,并且在三元固体分散体中具有适当的比例范围(托格列酮/ PVP / Aero-sil = 50 / 30-20 / 20-30),考虑总体质量满意度(例如物理稳定性和溶出度)时。此外,还发现疏水化的Aerosil R805比亲水性Aerosil 200具有更强的稳定作用。基于比较结果和可能的分子相互作用,讨论了稳定机理。

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