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Evaluation of Conditions Affecting Properties of Gac ( Momordica Cocochinensis Spreng) Oil-Loaded Solid Lipid Nanoparticles (SLNs) Synthesized Using High-Speed Homogenization Process

机译:高速均质法合成Gac(苦瓜)油载固体脂质纳米颗粒(SLNs)的性能影响条件的评价

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In this study, we attempted the preparation of gac oil-loaded solid lipid nanoparticles (SLNs) by the high-speed homogenization method using Naterol SE solid lipid, a cosmetic self-emulsifying base, and surfactant and investigated the effects of different conditions on the characteristics of the resulting nanoparticles. The suspensions containing 5% active agents (gac-oil, w/w) were dispersed in a surfactant concentration of 5% (w/w) (Span 80:Tween 80 ratio of 28:72 w/w) and 2.5% (w/w) of solid lipid (Naterol SE) concentration. Suitable conditions for hot homogenization were 13,000 rpm, 60 min and 60 °C for speed, time and temperature, respectively. The suitable conditions for the subsequent cold homogenization were 25 min of homogenization time and 5 °C of temperature. The results showed that the mean size of SLNs-gac oil was 107 nm (measured by laser diffraction spectrometry, LDS), and dried size of SLNs-gac oil ranged from 50 to 80 nm (measured by transmission electron microscope, TEM). In addition, the study investigated the impact of gac oil content on the particle size of SLNs-gac oil and its stability under different storage conditions of UV radiation and storage temperature. At high storage temperatures, the color changes (ΔE) of the samples were more profound in comparison to that at the low storage temperature. The ΔE value of the blank sample (SLN-FREE gac-oil) was higher than that of the Gac oil-loaded SLNs samples (SLN-gac oil).
机译:在这项研究中,我们尝试使用Naterol SE固体脂质,化妆品自乳化基质和表面活性剂通过高速均质化方法制备载有gac油的固体脂质纳米颗粒(SLNs),并研究了不同条件对脂质体的影响。所得纳米粒子的特性。将含有5%活性剂(gac-oil,w / w)的悬浮液以5%(w / w)(Span 80:Tween 80比例为28:72 w / w)和2.5%(w / w)的固体脂质(Naterol SE)浓度。热均质的合适条件分别是速度,时间和温度分别为13,000 rpm,60分钟和60°C。随后进行冷均质的合适条件是均质时间为25分钟,温度为5°C。结果显示SLNs-gac油的平均尺寸为107nm(通过激光衍射光谱法,LDS测量),并且SLNs-gac油的干燥尺寸为50-80nm(通过透射电子显微镜,TEM测量)。此外,该研究还研究了加克油的含量对SLNs-加克油的粒径及其在不同的紫外线辐射和储存温度条件下的稳定性的影响。与在低储存温度下相比,在高储存温度下样品的颜色变化(ΔE)更深。空白样品(不含SLN-gac油)的ΔE值高于加有Gac油的SLNs样品(SLN-gac油)的ΔE值。

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