Boonme Prapaporn, Krauel Karen, Graf Anja, Rades Thomas, Junyaprasert Varaporn Buraphacheep
Department of Pharmacy, Faculty of Pharmacy, Mahidol University, Bangkok 10400, Thailand.
AAPS PharmSciTech. 2006 May 12;7(2):E45. doi: 10.1208/pt070245.
This research was aimed to characterize microemulsion systems of isopropyl palmitate (IPP), water, and 2:1 Brij 97 and 1-butanol by different experimental techniques. A pseudoternary phase diagram was constructed using water titration method. At 45% wt/wt surfactant system, microemulsions containing various ratios of water and IPP were prepared and identified by electrical conductivity, viscosity, differential scanning calorimetry (DSC), cryo-field emission scanning electron microscopy (cryo-FESEM) and nuclear magnetic resonance (NMR). The results from conductivity and viscosity suggested a percolation transition from water-in-oil (water/oil) to oil-in-water (oil/water) microemulsions at 30% wt/wt water. From DSC results, the exothermic peak of water and the endothermic peak of IPP indicated that the transition of water/oil to oil/water microemulsions occurred at 30% wt/wt water. Cryo-FESEM photomicrographs revealed globular structures of microemulsions at higher than 15% wt/wt water. In addition, self-diffusion coefficients determined by NMR reflected that the diffusability of water increased at higher than 35% wt/wt water, while that of IPP was in reverse. Therefore, the results from all techniques are in good agreement and indicate that the water/oil and oil/water transition point occurred in the range of 30% to 35% wt/wt water.
本研究旨在通过不同实验技术对棕榈酸异丙酯(IPP)、水以及2:1的Brij 97和正丁醇组成的微乳液体系进行表征。采用水滴定法构建了拟三元相图。在45%(重量/重量)的表面活性剂体系下,制备了含有不同水与IPP比例的微乳液,并通过电导率、粘度、差示扫描量热法(DSC)、低温场发射扫描电子显微镜(cryo-FESEM)和核磁共振(NMR)进行鉴定。电导率和粘度结果表明,在30%(重量/重量)的水含量时,发生了从油包水(水/油)微乳液到水包油(油/水)微乳液的渗滤转变。从DSC结果来看,水的放热峰和IPP的吸热峰表明,在30%(重量/重量)的水含量时发生了从水/油微乳液到油/水微乳液的转变。低温场发射扫描电子显微镜照片显示,在水含量高于15%(重量/重量)时微乳液呈现球状结构。此外,通过核磁共振测定的自扩散系数反映出,在水含量高于35%(重量/重量)时水的扩散性增加,而IPP的扩散性则相反。因此,所有技术的结果都高度一致,表明水/油和油/水的转变点发生在30%至35%(重量/重量)的水含量范围内。