Ho H O, Hsiao C C, Sheu M T
Graduate Institute of Pharmaceutical Sciences, Taipei Medical College, Taiwan, ROC.
J Pharm Sci. 1996 Feb;85(2):138-43. doi: 10.1021/js950352h.
Phase diagrams containing the microemulsion region were constructed for pseudo-ternary systems composed for polyglycerol fatty acid ester/cosurfactant/Captex 300/water. It was found necessary to add ethanol, 1-propanol, 1-butanol as cosurfactant to produce microemulsions. The results also demonstrated microemulsions were only able to form when employing polyglycerol fatty acid esters with hydrophile-lipophile balances (HLBs) between 8 and 13, such as MO500, MO750, SO750, and ML310. Most microemulsions were determined to be Winsor type IV by dilution and dye solubility tests. Microemulsions stored at ambient temperature maintained constant viscosity, indicating that the system was thermodynamically stable for long periods. Further, several microemulsion formulations were demonstrated to be promising for oral delivery of insulin based on the results of stability tests and acid-protection efficiency.
构建了由聚甘油脂肪酸酯/助表面活性剂/Captex 300/水组成的拟三元体系的包含微乳液区域的相图。发现有必要添加乙醇、1-丙醇、1-丁醇作为助表面活性剂来制备微乳液。结果还表明,只有使用亲水亲油平衡(HLB)在8至13之间的聚甘油脂肪酸酯,如MO500、MO750、SO750和ML310时,微乳液才能形成。通过稀释和染料溶解度测试确定大多数微乳液为Winsor IV型。在室温下储存的微乳液粘度保持恒定,表明该体系在很长一段时间内是热力学稳定的。此外,基于稳定性测试和酸保护效率的结果,证明了几种微乳液制剂在胰岛素口服给药方面具有前景。