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Development of New Polysilsesquioxane Spherical Particles as Stabilized Active Ingredients For Sunscreens

机译:新型聚倍半硅氧烷球形颗粒作为稳定剂的开发

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摘要

Healthy skin is a sign of positive self-worth, attractiveness and vitality. Compromises to this are frequently caused by extended periods of recreation in the sun and in turn exposure to the harmful effects of UV radiation. To maintain strength and integrity, protection of the skin is paramount. This can be achieved by implementing skin-care products which contain sunscreen active ingredients that provide UV protection. Unfortunately, photo-degradation, toxicity, and photo-allergies limit the effectiveness of present day sunscreen ingredients. Currently, this is moderated by physically embedding within inert silica particles, but leaching of the active ingredient can occur, thereby negating protective efforts. Alternatively, this research details the preparation and investigation of bridged silsesquioxane analogues of commercial ingredients which can be chemically grafted to the silica matrix. Studies with bridged salicylate particles detail facile preparation, minimized leaching, and enhanced UV stability over physically encapsulated and pendant salicylate counterparts. In terms of UVB protective ability, the highest maintenance of sun protection factor (SPF) after extended UV exposure was achieved with bridged incorporation, and has been attributed to corollary UV stability. Additionally, bridged salicylate particles can be classified as broad-spectrum, and rate from moderate to good in terms of UVA protective ability. Particles incorporated with a bridged curcuminoid silsesquioxane were also prepared and displayed comparable results. As such, an attractive method for sunscreen isolation and stabilization has been developed to eliminate the problems associated with current sunscreens, all while maintaining the established UV absorbance profiles of the parent compound. To appreciate the technology utilized in this research, a thorough understanding of sol-gel science as it pertains to hybrid organic/silica particles, including methods of organic fragment incorporation and insight on the effect of incorporation method on ingredient leaching and UV stability, is vital. This was afforded by analysis of hybrid fluorescent dansyl particles, prepared by both O/W microemulsion polymerization and a modified Stöber process, which detailed that covalent entrapment of bridged dansyl silsesquioxane is the incorporation method of choice to ensure minimized leaching and enhanced UV stability. As such, use of this method can provide exciting applications in fields where stability and retainment of the embedded ingredient is paramount for efficacy.
机译:健康的皮肤是积极自我价值,吸引力和活力的标志。对此的妥协通常是由于长时间在阳光下进行娱乐,进而暴露于紫外线辐射的有害影响而引起的。为了保持强度和完整性,保护皮肤至关重要。这可以通过使用护肤产品来实现,这些护肤产品包含提供紫外线防护的防晒活性成分。不幸的是,光降解,毒性和光过敏限制了当今防晒成分的有效性。目前,这可以通过物理包埋在惰性二氧化硅颗粒中来缓解,但是可能会发生活性成分的浸出,从而消除了保护作用。或者,本研究详细介绍了可化学嫁接到二氧化硅基质上的商业成分桥连倍半硅氧烷类似物的制备和研究。与桥连的水杨酸酯颗粒的研究详细说明了与物理封装和悬挂的水杨酸酯对应物相比,制备方法更简便,浸出最少,紫外线稳定性更高。就UVB的保护能力而言,通过桥式结合可以在长时间暴露于紫外线后达到最高的防晒因子(SPF)维持率,这归因于必然的紫外线稳定性。另外,桥接的水杨酸盐颗粒可以分类为广谱,并且在UVA防护能力方面的比率从中等到良好。还制备了与桥联的姜黄素倍半硅氧烷结合的颗粒,并显示出可比的结果。因此,已经开发了一种用于防晒隔离和稳定化的有吸引力的方法,以消除与当前防晒剂相关的问题,同时保持所建立的母体化合物的紫外线吸收特性。为了欣赏这项研究中使用的技术,对与混合有机/二氧化硅颗粒有关的溶胶-凝胶科学(包括有机碎片掺入方法)以及对掺入方法对成分浸出和紫外线稳定性的影响的见解的透彻了解至关重要。 。通过分析通过O / W微乳液聚合和改良的Stöber方法制备的混合荧光丹磺酰基颗粒可以提供这一点,该方法详细介绍了桥接的丹磺酰倍半硅氧烷的共价捕获是确保减少浸出和增强UV稳定性的首选掺入方法。这样,该方法的使用可以在其中嵌入成分的稳定性和保留对于功效至关重要的领域中提供令人兴奋的应用。

著录项

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    Tolbert Stephanie Helene;

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  • 年度 2015
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