Department of Food Science and Nutrition, Zhejiang Key Laboratory for Agro-Food Processing, Fuli Institute of Food Science, Zhejiang University, Hangzhou 310058, China.
Int J Mol Sci. 2013 Sep 30;14(10):19763-73. doi: 10.3390/ijms141019763.
The complex nanoliposomes encapsulating both a hydrophilic drug vitamin C (vit C) and hydrophobic drug medium-chain fatty acids (MCFAs) was prepared by combining double emulsion method with dynamic high pressure microfluidization. The complex nanoliposomes was further freeze-dried under -86 °C for 48 h with sucrose at the sucrose/lipids ratio of 2:1(w/w) in order to enhance its stability. The freeze-dried complex nanoliposomes under the suitable conditions exhibited high entrapment efficiency of MCFAs (44.26 ± 3.34)%, relatively high entrapment efficiency of vit C (62.25 ± 3.43)%, low average size diameter (110.4 ± 7.28) nm and good storage stability at 4 °C for 60 days with slight changes in mean particle diameter and drug entrapment efficiencies. The results of transmission electron microscopy of freeze-dried complex nanoliposomes also showed that the freeze-dried samples with sucrose were stable without great increase in their particle sizes and without destroying their spherical shape. The results indicated that sucrose presented well protection effects in MCFAs-vit C complex nanoliposomes, suggesting the possibility of further usage in commercial liposomes.
采用复乳法结合动态高压微射流法制备了同时包封亲水性药物维生素 C(vit C)和疏水性药物中链脂肪酸(MCFAs)的复合纳米脂质体。进一步将复合纳米脂质体在 -86°C 下冷冻干燥 48 小时,采用蔗糖作为冻干保护剂,蔗糖/脂质质量比为 2:1(w/w),以提高其稳定性。在合适的条件下,冻干的复合纳米脂质体具有较高的 MCFAs 包封效率(44.26±3.34%),相对较高的 vit C 包封效率(62.25±3.43%),较小的平均粒径(110.4±7.28nm)和良好的储存稳定性,在 4°C 下储存 60 天,平均粒径和药物包封效率仅略有变化。冷冻干燥复合纳米脂质体的透射电子显微镜结果也表明,添加蔗糖的冻干样品稳定,粒径没有明显增大,球形结构没有破坏。结果表明,蔗糖对 MCFAs-vit C 复合纳米脂质体具有良好的保护作用,这表明其在商业脂质体中的进一步应用具有可能性。