Sriamornsak Pornsak, Kennedy Ross A
School of Biomedical Sciences, Charles Sturt University, Locked Bag 588, Wagga Wagga 2678, NSW, Australia.
Eur J Pharm Sci. 2007 Nov;32(3):231-9. doi: 10.1016/j.ejps.2007.08.001. Epub 2007 Aug 7.
The aim of this study was to investigate the effect of drug solubility on the release behavior from calcium polysaccharide gel (CaPG)-coated pellets. Three different drugs with similar chemical structure, but different water solubility, namely caffeine (CAF), theophylline (TPL) and theobromine (TBR), were used. Drug-loaded spherical pellets were manufactured by an extrusion-spheronization method. The CaPG was applied on the pellets loaded with different drugs by interfacial complexation coating. The encapsulation efficiency of coated pellets was found to vary from 57.6 to 84.3%, depending on the solubility of the active drug and polysaccharide type. Drug release from different uncoated pellets was relatively unaffected by pH and release media but depended mainly on drug solubility. Release behavior was significantly modified in the pellets coated with CaPG, for all of the drugs tested. Drug release from coated pellets of the different drugs showed different release kinetics. The difference in the drug release is probably due to the difference in the drug dissolution within the core, before its partition and diffusion through the CaPG coat. The CAF dissolved faster and achieved a higher concentration in solution, which drove diffusion. The release of TBR from the coated pellets was much slower than that of the CAF or TPL because of its low solubility. However, the release of all drugs was about four- to sixfold slower for coated than uncoated pellets, suggesting that the coating influenced the retardation of drug release from the coated pellets. Therefore, the CaPG coating may provide a sustained release delivery system for all drugs tested.
本研究的目的是考察药物溶解度对多糖钙凝胶(CaPG)包衣微丸释放行为的影响。使用了三种化学结构相似但水溶性不同的药物,即咖啡因(CAF)、茶碱(TPL)和可可碱(TBR)。采用挤出滚圆法制备载药球形微丸。通过界面络合包衣将CaPG应用于载有不同药物的微丸上。发现包衣微丸的包封率在57.6%至84.3%之间变化,这取决于活性药物的溶解度和多糖类型。不同未包衣微丸的药物释放相对不受pH值和释放介质的影响,但主要取决于药物溶解度。对于所有测试药物,用CaPG包衣的微丸的释放行为有显著改变。不同药物包衣微丸的药物释放表现出不同的释放动力学。药物释放的差异可能是由于药物在核心内溶解、在通过CaPG包衣进行分配和扩散之前的差异所致。CAF溶解更快,在溶液中达到更高浓度,从而推动扩散。由于TBR溶解度低,其从包衣微丸中的释放比CAF或TPL慢得多。然而,所有药物包衣微丸的释放速度比未包衣微丸慢约四至六倍,这表明包衣影响了包衣微丸中药物释放的延迟。因此,CaPG包衣可为所有测试药物提供缓释给药系统。