Arriagada Francisco, Ugarte Catalina, Günther Germán, Larraín María Angélica, Guarnizo-Herrero Víctor, Nonell Santi, Morales Javier
Instituto de Farmacia, Facultad de Ciencias, Universidad Austral de Chile, 5110033 Valdivia, Chile.
Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile, 8380494 Santiago, Chile.
Pharmaceutics. 2020 Apr 19;12(4):376. doi: 10.3390/pharmaceutics12040376.
The incorporation of pigments and natural polyphenols into inorganic matrices, resulting in a hybrid material that improves the resistance and chemical stability of the pigments and the antioxidant capacity of the materials, has been of great interest to the pharmaceutical, chemical and food industries. The aim of this work was to prepare and characterize a bifunctional pigment-antioxidant nanomaterial-based carminic acid-decorated solid core-mesoporous shell silica nanoparticles, evaluating its properties as a pigment, its antioxidant capacity and its properties as a chemical stabilizer of emulsions. The chemical stability of oil-in-water (O/W) Pickering emulsions was evaluated determining the stability of vitamin E solubilized in the oil phase. Carminic acid was attached through the action of coupling ethylcarbodiimide hydrochloride (EDC)/-hydroxysuccinimide (NHS) agents, and the resulting spherical and homogeneous nanoparticles showed a diameter close to 175 nm. A notorious change of emulsion color was observed by the addition of the nanomaterial. Emulsions showed an attractive pink color, and when the pH was adjusted to pH 3 and pH 9, a change in color was observed, analogous to carminic acid in solution. The nanomaterial incorporation also improved chemical stability, decreasing vitamin E consumption to 9.26% of the initial value, demonstrating an important antioxidant effect of the developed nanomaterial.
将颜料和天然多酚掺入无机基质中,从而形成一种能提高颜料的抗性和化学稳定性以及材料抗氧化能力的杂化材料,这已引起制药、化工和食品行业的极大兴趣。这项工作的目的是制备并表征一种基于双功能颜料-抗氧化剂纳米材料的胭脂红酸修饰的实心核-介孔壳二氧化硅纳米颗粒,评估其作为颜料的性能、抗氧化能力以及作为乳液化学稳定剂的性能。通过测定溶解在油相中的维生素E的稳定性来评估水包油(O/W)皮克林乳液的化学稳定性。通过盐酸乙二胺碳二亚胺(EDC)/N-羟基琥珀酰亚胺(NHS)偶联剂的作用附着胭脂红酸,所得的球形且均匀的纳米颗粒直径接近175 nm。加入纳米材料后观察到乳液颜色发生显著变化。乳液呈现出吸引人的粉红色,当将pH值调节至pH 3和pH 9时,观察到颜色变化,类似于溶液中的胭脂红酸。纳米材料的掺入还提高了化学稳定性,将维生素E的消耗量降低至初始值的9.26%,表明所开发的纳米材料具有重要的抗氧化作用。