Pongjanyakul Thaned, Sungthongjeen Srisagul, Puttipipatkhachorn Satit
Department of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, Khon Kaen University, Khon Kaen 40002, Thailand.
Int J Pharm. 2006 Aug 17;319(1-2):20-8. doi: 10.1016/j.ijpharm.2006.03.033. Epub 2006 Apr 1.
Diclofenac calcium alginate (DCA) beads containing glyceryl palmitostearate (GPS) were prepared by ionotropic gelation method. The effect of GPS amount and heat treatment on characteristics of the DCA beads was investigated. Incorporation of GPS into the DCA beads increased particle size and entrapment efficiency of diclofenac sodium (DS), but decreased water uptake in distilled water, and DS release rate. The heat treatment caused the DCA beads to be irregular shape particles and to possess higher water uptake. A slower release rate of DS in distilled water was found because of interaction of DS and alginate polymer matrix, and a restriction of water sorption into the inside region of the beads, which caused by the shrinkage of the beads after heating. However, the heat treatment did not affect particle shape and water uptake in distilled water of the 3%GPS-DCA beads. Differential scanning calorimetric study showed that GPS in the DCA beads was resolidified to different polymorph after cooling. Furthermore, the micro-Raman spectra indicated the existence of DS in the GPS matrix particles in the beads due to the partition of DS into the melted GPS during heat treatment. This led to a decrease in release rate of DS in pH 6.8 phosphate buffer and a change in DS release pattern in distilled water. Thus, not only the calcium alginate matrix, but also the resolidified GPS matrix in the alginate beads controlled the DS release from the 3%GPS-DCA beads with heat treatment.
采用离子凝胶法制备了含有甘油棕榈酸硬脂酸酯(GPS)的双氯芬酸钙海藻酸盐(DCA)珠粒。研究了GPS用量和热处理对DCA珠粒特性的影响。将GPS掺入DCA珠粒中可增加双氯芬酸钠(DS)的粒径和包封率,但会降低其在蒸馏水中的吸水率和DS释放速率。热处理使DCA珠粒成为不规则形状的颗粒,并具有更高的吸水率。由于DS与海藻酸盐聚合物基质的相互作用以及加热后珠粒收缩导致水吸附受限,在蒸馏水中发现DS的释放速率较慢。然而,热处理对3%GPS-DCA珠粒的颗粒形状和在蒸馏水中的吸水率没有影响。差示扫描量热研究表明,DCA珠粒中的GPS在冷却后重新固化为不同的多晶型物。此外,显微拉曼光谱表明,由于热处理过程中DS分配到熔化的GPS中,珠粒中GPS基质颗粒中存在DS。这导致DS在pH 6.8磷酸盐缓冲液中的释放速率降低以及在蒸馏水中DS释放模式的改变。因此,不仅海藻酸钙基质,而且海藻酸盐珠粒中重新固化的GPS基质都控制了热处理后3%GPS-DCA珠粒中DS的释放。