Wu J C, Su S G, Shyu S S, Chen H
Department of Chemical Engineering, National Central University, Chung-Li, Taiwan, PR, China.
J Microencapsul. 1994 May-Jun;11(3):297-308. doi: 10.3109/02652049409040459.
Four solvent-non-solvent pairs (ethyl-acetate-cyclohexane, dichloromethane-cyclohexane, acetone-cyclohexane and dichloromethane-n-hexane) with different solubility parameter differences were chosen to prepare ethylcellulose microcapsules containing theophylline by using non-solvent-addition phase separation method. The results showed that the surface morphology and release behaviour of microcapsules were greatly affected by different solvent-non-solvent pairs. The surface of the microcapsules prepared from the system of high solubility parameter difference was more smooth than those from the systems of low solubility parameter difference. The release rate of the drug from microcapsules decreased with increasing solubility parameter difference of the preparative system. The determination of the wall thickness and porosity of the microcapsules could reasonably explain the release characteristics. The porosity of the microcapsules decreased with the increase of solubility parameter difference of the preparative system, but the wall thickness of the microcapsules showed a corresponding increase. The release of the drug from various ethylcellulose microcapsules fitted first-order kinetics with biphasic release profiles.
选择四对具有不同溶解度参数差异的溶剂 - 非溶剂组合(乙酸乙酯 - 环己烷、二氯甲烷 - 环己烷、丙酮 - 环己烷和二氯甲烷 - 正己烷),采用非溶剂添加相分离法制备含茶碱的乙基纤维素微胶囊。结果表明,不同的溶剂 - 非溶剂组合对微胶囊的表面形态和释放行为有很大影响。由高溶解度参数差异体系制备的微胶囊表面比低溶解度参数差异体系制备的微胶囊表面更光滑。微胶囊中药物的释放速率随制备体系溶解度参数差异的增加而降低。微胶囊壁厚和孔隙率的测定可以合理地解释其释放特性。微胶囊的孔隙率随制备体系溶解度参数差异的增加而降低,但其壁厚相应增加。各种乙基纤维素微胶囊中药物的释放符合具有双相释放曲线的一级动力学。