首页> 美国卫生研究院文献>AAPS PharmSciTech >Whey Protein/Polysaccharide-Stabilized Oil Powders for Topical Application—Release and Transdermal Delivery of Salicylic Acid from Oil Powders Compared to Redispersed Powders
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Whey Protein/Polysaccharide-Stabilized Oil Powders for Topical Application—Release and Transdermal Delivery of Salicylic Acid from Oil Powders Compared to Redispersed Powders

机译:乳清蛋白/多糖稳定的油性粉剂的局部应用-水油酸与再分散性粉剂相比水杨酸的释放和透皮递送

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摘要

Oil-in-water (o/w) emulsions are commonly converted into solid-like powders in order to improve their physical and chemical stabilities. The aim of this study was to investigate whether whey protein/polysaccharide-stabilized o/w emulsions could be converted into stable oil powders by means of freeze-drying. Moreover, during this study, the effects of pH and polymer type on release and trans(dermal) delivery of salicylic acid, a model drug, from these oil powders were investigated and compared to those of the respective template emulsions and redispersed oil powders. Physical characterization of the various formulations was performed, such as droplet size analysis and oil leakage, and relationships drawn with regards to release and trans(dermal) delivery. The experimental outcomes revealed that the oil powders could be redispersed in water without changing the release characteristics of salicylic acid. pH and polymer type affected the release of salicylic acid from the oil powders, template emulsions, and redispersed powders similarly. Contrary, the transdermal delivery from the oil powders and from their respective redispersed oil powders was differently affected by pH and polymer type. It was hypothesized that the release had been influenced by the electrostatic interactions between salicylic acid and emulsifiers, whereas the transdermal performance could have been determined by the particle or aggregate sizes of the formulations.
机译:水包油(o / w)乳液通常会转化成固体粉末,以提高其物理和化学稳定性。这项研究的目的是研究是否可以通过冷冻干燥将乳清蛋白/多糖稳定的o / w乳液转化为稳定的油粉。此外,在这项研究中,研究了pH和聚合物类型对这些油粉中水杨酸(一种模型药物)的释放和透皮传递的影响,并将其与相应的模板乳液和再分散油粉进行了比较。进行了各种制剂的物理表征,例如液滴尺寸分析和漏油,并绘制了关于释放和透皮传递的关系。实验结果表明,该油粉可以在不改变水杨酸释放特性的情况下重新分散在水中。 pH和聚合物类型也会类似地影响油粉,模板乳液和再分散粉中水杨酸的释放。相反,油粉及其各自再分散的油粉的透皮递送受pH和聚合物类型的不同影响。假设释放受到水杨酸和乳化剂之间静电相互作用的影响,而透皮性能可能取决于制剂的颗粒或聚集体大小。

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