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Usage of sugar ester in the preparation of avocado oil nanoemulsion

机译:糖酯在鳄梨油纳米乳液制备中的用途

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摘要

Objectives: Due to the high dynamics of pharmaceutical products markets, developments of new products using latest innovative technology are becoming a norm of many pharmaceutical companies. Nanoscale materials such as nanoemulsion (NE) offer advantages such as the controllable droplet size, long-term stability, and power solubilization ability. It is beneficial in various delivery systems either for transdermal, ocular, nasal, vaginal, and parenteral drug delivery. The objective of the study was to prepare avocado oil NE using different surfactants to find the most suitable nanosized droplets, as avocado oil offers a variety of purported nutritional and medicinal benefits. Methods: Sucrose esters, glycerol, and avocado oil with different ratio were used to produce pre-NE by phase inversion technique then pre-NE were self-emulsified with water to produce NE. The influence of the sucrose esters surfactants on the NE formulations were determined using three different types of sucrose esters surfactant (laureate, oleate, and palmitate). Stability study was conducted for NE at different temperatures (4°C, 25°C, and 40°C) for 6 months. Results: The NE contained sucrose laureate produced best nanosized formulations compared to other oleate and palmitate, with optimum droplet size 106 ± 1.70 nm, size distribution 0.156 ± 0.01, and zeta potential -30.4 ± 0.70. The NE formulations were very stable at 4°C compared to 25°C and 40°C while at 25°C NE showed moderate stability, but it was unstable at 40°C. Conclusion: Sucrose laureate was able to produce NE with phase inversion and self-emulsification techniques and the ideal storage condition for NE is 4°C.
机译:目标:由于药品市场的高动态,使用最新创新技术开发新产品正成为许多制药公司的规范。纳米级材料(例如纳米乳液(NE))具有诸如可控的液滴尺寸,长期稳定性和功率增溶能力等优点。在透皮,眼,鼻,阴道和肠胃外药物递送的各种递送系统中都是有益的。该研究的目的是使用不同的表面活性剂来制备鳄梨油NE,以找到最合适的纳米级液滴,因为鳄梨油具有多种声称的营养和药用价值。方法:采用相转化技术,用蔗糖酯,甘油,鳄梨油等不同比例制备前体NE,然后用水将自身乳化,制得NE。使用三种不同类型的蔗糖酯表面活性剂(月桂酸酯,油酸酯和棕榈酸酯)确定蔗糖酯表面活性剂对NE配方的影响。在不同温度(4°C,25°C和40°C)下对NE进行了6个月的稳定性研究。结果:与其他油酸酯和棕榈酸酯相比,NE所含蔗糖月桂酸酯产生了最佳的纳米级配方,最佳液滴尺寸为106±1.70 nm,尺寸分布为0.156±0.01,ζ电位为-30.4±0.70。与25°C和40°C相比,NE制剂在4°C时非常稳定,而在25°C时NE表现出中等稳定性,但在40°C时不稳定。结论:蔗糖月桂酸酯能够通过相转化和自乳化技术生产NE,NE的理想储存条件是4°C。

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