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Size and Vitamin E Release of Nanostructured Lipid Carriers with Different Liquid Lipids, Surfactants and Preparation Methods

机译:具有不同液体脂质,表面活性剂和制备方法的纳米结构脂质载体的尺寸和维生素E释放

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Solid lipid nanoparticles have excellent properties as delivery systems for dermal cosmetic and pharmaceutical formulations because they have good compatibility with the skin, protect the encapsulated substance from the medium, and control its release at the site of action. This work describes the preparation and characterization of nanostructured lipid carriers (NLC) containing vitamin E (NLC-VE). The emulsion-solidification technique was used to prepare the particles. Three non-ionic surfactants (Tween 80, Cremophor RH40 and Pluronic F-127) were used in two concentrations (5 and 10% (w/w)) and three liquid lipids (avocado oil, coconut oil and medium chain triglycerides (MCT)) were mixed with the solid lipid (stearic acid) to form the oil phase. Some processing variables (emulsification procedure, and time and energy during sonication) were modified to find the most suitable NLC in terms of particle size and release profile. Higher surfactant concentration produced more homogeneous nanoparticles with smaller diameter. The liquid lipid and its proportion in the oil phase also modified the characteristics of NLC-VE. Time and sonication energy did not strongly affect the particle size (24–28 nm), with the exception of the highest time and amplitude, which produced particles with 14nm. NLC-VE prepared with stearic acid as solid lipid, 10% (w/w) Tween 80 as surfactant, and MCT as liquid lipid in a 1:3 mass proportion of solid lipid-to-liquid lipid, had a unimodal size distribution and the best vitamin E release (50% in 24 h). Results indicate that this system can be used to improve the delivery of vitamin E.
机译:固体脂质纳米颗粒作为皮肤化妆品和药物制剂的递送系统具有优异的性质,因为它们具有良好的与皮肤相容性,保护封装的物质免受培养基的封装物质,并控制其在作用部位的释放。该工作描述了含有维生素E(NLC-VE)的纳米结构脂质载体(NLC)的制备和表征。乳液固化技术用于制备颗粒。三种非离子表面活性剂(Tween 80,Cremophor RH40和Pluronic F-127)用于两个浓度(5-10%(w / w))和三种液体脂质(鳄梨油,椰子油和中链甘油三酯(MCT) )与固体脂质(硬脂酸)混合以形成油相。修改了一些处理变量(乳化过程和超声处理期间的时间和能量),以在粒度和释放曲线方面找到最合适的NLC。较高的表面活性剂浓度产生更均匀的纳米颗粒,具有较小的直径。液体脂质及其在油相中的比例也改变了NLC-VE的特征。时间和超声能量没有强烈影响粒度(24-28nm),除了最高时间和幅度,其产生14nm的颗粒。用硬脂酸制备的NLC-Ve作为固体脂质,10%(w / w)吐温作为表面活性剂,并且MCT作为液体脂质在1:3质量比例的固体脂质 - 液体脂质中,具有单峰尺寸分布和最好的维生素E释放(24小时50%)。结果表明该系统可用于改善维生素E的递送。

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