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Influence of vegetable oil on the synthesis of bioactive nanocarriers with broad spectrum photoprotection

机译:植物油对具有广谱光保护作用的生物活性纳米载体合成的影响

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Due to their unique features, most nanostructured lipid carriers (NLCs) in association with vegetable oils that exhibit UV filtering properties and bioactivity could be used in many cosmetic formulations. Therefore, in this work, a new application of pomegranate seed oil (PSO) in the cosmetic sector was developed, based on the synthesis of bioactive lipid nanocarriers loaded with various UV filters by the hot high pressure homogenization technique. To get broad spectrum photoprotection, different UVA and UVB filters have been used (Avobenzone — AVO, Octocrylen-OCT, Bemotrizinol — BEMT). The influence of the solid lipids combined with PSO on the particle size, physical stability and entrapment efficiency was investigated using 8 nanocarrier systems. An improved physical stability and an appropriate size were obtained for NLCs prepared with Emulgade, carnauba wax and PSO (e.g. ?30.9÷-36.9 mV and 160÷185 nm). NLCs showed an entrapment efficiency above 90% and assured slow release rates of UV filters, especially for BEMT (5%). The developed nanocarriers have been formulated into safe and effective sunscreens containing low amounts of synthetic UV filters coupled with a high percent of natural ingredients. The highest SPF of 34.3 was obtained for a cream comprising of 11% PSO and 3.7% BEMT
机译:由于它们的独特功能,大多数具有紫外线过滤性能和生物活性的植物油纳米结构脂质载体(NLC)均可用于许多化妆品配方中。因此,在这项工作中,通过利用热高压均质技术合成负载了各种紫外线过滤剂的生物活性脂质纳米载体,开发了石榴籽油(PSO)在化妆品领域的新应用。为了获得广谱的光保护作用,已使用了不同的UVA和UVB滤光片(阿伏苯宗-AVO,八碳烯-OCT,苯甲曲唑-BEMT)。使用8种纳米载体系统研究了固体脂质与PSO结合对粒径,物理稳定性和包封效率的影响。用Emulgade,巴西棕榈蜡和PSO(例如〜30.9÷-36.9mV和160÷185nm)制得的NLC获得改善的物理稳定性和合适的尺寸。 NLCs的包封率超过90%,并确保了UV滤光片的缓慢释放速率,尤其是对于BEMT(5%)。已开发的纳米载体已被配制为安全有效的防晒霜,其中含有少量的合成UV过滤剂和高百分比的天然成分。对于包含11%PSO和3.7%BEMT的面霜,最高SPF为34.3

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