CPFRR, ERCPSP, School of Light Industry and Food Engineering, South China University of Technology, Guangzhou 510640, China.
Carbohydr Polym. 2013 Oct 15;98(1):73-9. doi: 10.1016/j.carbpol.2013.05.070. Epub 2013 May 31.
Blends of hydroxypropyl methylcellulose (HPMC) with up to 70% hydroxypropyl starch (HPS) were developed for use as hard capsule materials. Polyethylene glycol (PEG) was used as both a plasticizer and a compatibilizer in the blends. In order to prepare hard capsules for pharmaceutical application using the well-established method of dipping stainless steel mold pins into solution then drying at certain temperature, equilibrated solutions with higher solids concentration (20%) were investigated and developed. The solutions, films and capsules of the different HPMC/HPS blends were characterized by viscosity, transparency, tensile testing, water contact angle, SEM, as well as FTIR. The results showed that the blend system is immiscible but compatible in certain degree, especially after adding PEG. The hydroxypropylene groups grafted onto both cellulose and starch improved the compatibility between the HPMC and the modified starch. The higher viscosity of starch at lower temperature improved the viscosity balance of the system, which enlarged the operation window for the dipping-drying technique. The PEG increased the transparency and toughness of the various blends. By optimizing temperature and incubation time to control viscosity, capsules of various blends were successfully developed.
羟丙基甲基纤维素(HPMC)与高达 70%羟丙基淀粉(HPS)的混合物被开发为硬胶囊材料。聚乙二醇(PEG)在混合物中既用作增塑剂又用作增容剂。为了使用成熟的将不锈钢模具销浸入溶液中然后在一定温度下干燥的方法来制备用于药物应用的硬胶囊,研究并开发了具有更高固含量(20%)的平衡溶液。通过粘度、透明度、拉伸试验、水接触角、SEM 以及 FTIR 对不同 HPMC/HPS 共混物的溶液、薄膜和胶囊进行了表征。结果表明,该共混体系虽然不混溶,但在一定程度上是相容的,特别是加入 PEG 后。接枝到纤维素和淀粉上的羟丙基基团提高了 HPMC 和改性淀粉之间的相容性。淀粉在较低温度下的较高粘度改善了体系的粘度平衡,这扩大了浸涂干燥技术的操作窗口。PEG 提高了各种共混物的透明度和韧性。通过优化温度和孵育时间来控制粘度,可以成功开发出各种共混物的胶囊。