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Solidification of oil liquids by encapsulation within porous hollow silica microspheres of narrow size distribution for pharmaceutical and cosmetic applications

机译:通过封装在狭窄尺寸分布的多孔中空二氧化硅微球中固化油液,用于制药和化妆品应用

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This study presents a new process for hydrophilic formulation of liquid oils, by encapsulation and solidification of the oils within porous hollow silica microspheres of narrow size distribution. Jojoba [Simmondsia chinensis] oil was chosen as a model study due to its broad potential applications. Jojoba oil is produced from the seeds of the jojoba plant, which are rich in liquid wax. Today, jojoba oil is mainly used for applications such as pharmaceuticals and cosmetics. The oil is primarily used as a carrier oil that stabilizes sensitive active compounds, such as vitamins and other oils, which are susceptible to air oxidation or UV-light degradation. Silica (SiO2) particles are used in many different industrial products such as food and cosmetics due to their chemical inertness. Here, uniform porous hollow SiO2 microspheres, composed of sintered SiO2 nanoparticles, were made by coating polystyrene template microspheres of narrow size distribution with three layers of SiO2 nanoparticles, followed by removal of the polystyrene core by combustion at 500 degrees C. The synthesis stages were characterized by SEM, TEM, FTIR and TGA analyses. The measurements confirmed the increasing content of SiO2 after each coating cycle and the absence of polystyrene in the final hollow particles. Jojoba oil was successfully encapsulated within the hollow SiO2 microspheres by heating/cooling cycles, reaching an encapsulation yield of up to 10 times of the SiO2 dry shell weight. The oil encapsulation was confirmed by a floatability test and confocal microscopy. The hollow SiO2 and the oil-filled microspheres were found non-toxic to HaCaT cell line, a spontaneously transformed human epithelial cell line from adult skin. Furthermore, the oil-filled SiO2 microspheres were dispersed in a hydrogel and exhibited a homogeneous water-based formulation that appeared stable after six months storage. In light of these findings, we offer these jojoba oil-filled particles as a model for hydrophilic formulation of oils in general and in particular as suitable candidates for pharmaceutical and cosmetic applications.
机译:这项研究提出了一种新的液态油亲水配方方法,该方法是通过在狭窄尺寸分布的多孔中空二氧化硅微球中将油包封和固化来实现的。霍霍巴油(Simmondsia chinensis)因其广泛的应用前景而被选为模型研究对象。霍霍巴油由霍霍巴植物的种子生产而成,该种子富含液态蜡。如今,霍霍巴油主要用于制药和化妆品等应用。该油主要用作稳定敏感的活性化合物(例如维生素和其他油类)的载体油,这些化合物容易受到空气氧化或UV光降解的影响。二氧化硅(SiO2)颗粒由于其化学惰性而被用于许多不同的工业产品中,例如食品和化妆品。在此,通过用三层SiO2纳米颗粒涂覆窄尺寸分布的聚苯乙烯模板微球,然后在500摄氏度下燃烧除去聚苯乙烯核,制得了由烧结的SiO2纳米颗粒组成的均匀,多孔的空心SiO2微球。通过SEM,TEM,FTIR和TGA分析进行表征。测量结果证实,每个涂层循环后SiO2含量增加,并且最终空心颗粒中不存在聚苯乙烯。霍霍巴油通过加热/冷却循环成功地封装在中空的SiO2微球中,其封装产量高达SiO2干壳重量的10倍。通过漂浮性测试和共聚焦显微镜确认了油的包封。发现中空的SiO2和充满油的微球对HaCaT细胞系无毒,HaCaT细胞系是成人皮肤自发转化的人上皮细胞系。此外,将油填充的SiO2微球分散在水凝胶中,并显示出均质的水基配方,该配方在储存六个月后显得稳定。根据这些发现,我们提供这些荷荷巴油填充颗粒,通常作为油的亲水性配方的模型,尤其是作为药物和化妆品应用的合适候选物。

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