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水分含量、温度和暴露时间对壳聚糖粉末和片剂物理稳定性的影响。

Effect of moisture content, temperature and exposure time on the physical stability of chitosan powder and tablets.

机构信息

Department of Pharmaceutics, Faculty of Health Sciences, School of Pharmacy, North-West University , Potchefstroom , South Africa.

出版信息

Drug Dev Ind Pharm. 2014 Jun;40(6):730-42. doi: 10.3109/03639045.2013.782501. Epub 2013 Apr 18.

Abstract

CONTEXT

Chitosan does not rank highly regarding its employment as tablet filler due to certain limitations. Undesirable properties that limit its utilization as excipient in solid dosage forms include its hydration propensity that negatively affects tablet stability, strength and disintegration.

OBJECTIVE

The objective of this study was to investigate the physical stability of chitosan powder, mixtures, granules and tablets under accelerated conditions such as elevated temperatures and humidity over different periods of time.

METHODS

Selected physico-chemical properties of pure chitosan powder, physical mixtures of chitosan with Kollidon® VA64 (BASF, Ludwigshafen, Germany), chitosan granules, as well as tablets were evaluated under conditions of elevated humidity and temperature.

RESULTS AND DISCUSSION

The physical stability of chitosan tablets exhibited sensitivity towards varying exposure conditions. It was furthermore evident that the presence of moisture (sorbed water) had a marked influence on the physical stability of chitosan powder and tablets. It was evident that the presence of Kollidon® VA64 as well as the method of inclusion of this binder influenced the properties of chitosan tablets. The physical stability of chitosan powder deteriorated to a greater extent compared to that of the chitosan tablets, which were subjected to the same conditions.

CONCLUSION

It is recommended that tablets containing chitosan should be stored at a temperature not exceeding 25 °C as well as at a relatively low humidity (<60%) to prevent deterioration of physical properties. Direct compression of chitosan granules which contained 5%w/w Kollidon® VA64 produced the best formulation in terms of physical stability at the different conditions.

摘要

背景

由于某些限制,壳聚糖在作为片剂填充剂方面的应用排名不高。其作为固体制剂赋形剂的一些不理想特性包括其亲水性,这会对片剂的稳定性、强度和崩解产生负面影响。

目的

本研究旨在研究壳聚糖粉末、混合物、颗粒和片剂在不同时间和不同加速条件下(如高温和高湿度)的物理稳定性。

方法

评估了纯壳聚糖粉末、壳聚糖与 Kollidon® VA64(巴斯夫,路德维希港,德国)的物理混合物、壳聚糖颗粒以及片剂的某些物理化学性质,在高湿度和高温条件下进行。

结果与讨论

壳聚糖片剂的物理稳定性对不同的暴露条件表现出敏感性。此外,很明显水分(吸附水)的存在对壳聚糖粉末和片剂的物理稳定性有显著影响。很明显,Kollidon® VA64 的存在以及包含这种粘合剂的方法都会影响壳聚糖片剂的性质。与处于相同条件的壳聚糖片剂相比,壳聚糖粉末的物理稳定性恶化得更为严重。

结论

建议含有壳聚糖的片剂应储存在温度不超过 25°C 以及相对湿度(<60%)的环境中,以防止物理性质恶化。在不同条件下,直接压缩含有 5%w/w Kollidon® VA64 的壳聚糖颗粒可获得最佳的物理稳定性配方。

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