Department of Pharmacy, School of Pharmaceutical Sciences, University of São Paulo, 580 Prof. Lineu Prestes Av., Bl. 15, 05508-900, São Paulo, SP, Brazil.
Research & Development Laboratory - Chemyunion Ltd., 1501 Av. Independência, 18087-101, Sorocaba, SP, Brazil.
Colloids Surf B Biointerfaces. 2021 May;201:111651. doi: 10.1016/j.colsurfb.2021.111651. Epub 2021 Feb 21.
Bigels have been studied as topical formulations for its benefits over sensory and drug delivery parameters. However, there is still few evidences about the properties of the combination of organogelators, oily phases and bioactive molecules into rheological and stability behavior. We investigated the use of classical organogelators (candelilla wax and 12-hydroxystearic acid) and oily phases (sunflower and mineral oil) in 5/95 organogel/polymeric hydrogel ratio to compare vitamin E bigels with its corresponding emulsions. The rheological measurements, microstructure, physical and oxidative stability properties and biological behavior were evaluated. The obtained oil-in-water bigels and emulsions showed crystallization pattern at the interface with high thermal and centrifuge-stress stability. Viscoelastic weak gels were obtained with higher thixotropy and consistency of 12-hydroxystearic bigels. The diameter of the inner phase was increased by vitamin E, despite its little influence over physical and oxidative stability of bigels and emulsions. Those findings indicated that sensory attributes may be regulated by the organogel composition.
贝格尔已被研究作为局部制剂,因其在感觉和药物传递参数方面的优势。然而,关于将有机凝胶剂、油性相和生物活性分子组合成流变学和稳定性行为的性质的证据仍然很少。我们研究了在 5/95 有机凝胶/聚合物水凝胶比例中使用经典有机凝胶剂(坎地里拉蜡和 12-羟基硬脂酸)和油性相(葵花籽油和矿物油),以比较维生素 E 贝格尔及其相应的乳液。评估了流变学测量、微观结构、物理和氧化稳定性特性以及生物学行为。所得的油包水贝格尔和乳液在界面处显示出结晶图案,具有高热和离心应力稳定性。用 12-羟基硬脂酸制成的粘弹性弱凝胶具有更高的触变性和稠度。维生素 E 增加了内相的直径,尽管其对贝格尔和乳液的物理和氧化稳定性影响很小。这些发现表明,感官属性可能受到有机凝胶组成的调节。