Research Institute for Medicines (iMed.ULisboa), Faculty of Pharmacy, Universidade de Lisboa, Lisbon, Portugal.
Research Institute for Medicines (iMed.ULisboa), Faculty of Pharmacy, Universidade de Lisboa, Lisbon, Portugal.
Int J Pharm. 2023 May 10;638:122941. doi: 10.1016/j.ijpharm.2023.122941. Epub 2023 Apr 10.
The recent Covid-19 pandemics led to the increased use of facial masks, which can cause skin lesions due to continuous pressure, tension and friction forces on the skin. A preventive approach is the inclusion of dressings between the face and the mask. However, there are still uncertainties about the protective effect of dressings and whether their use compromises the efficiency of masks. The current study aimed to develop and test the efficacy of a gelatin-based hydrogel patch to be placed between the mask and the facial area. Design of Experiment with a Quality by Design approach tools were used in the patch development and in vitro characterization was performed through rheological evaluation, ATR-FTIR and molecular docking studies. Furthermore, tribology studies were performed to test the patch performance. The results showed that the addition of excipients enhanced gelation temperature, elasticity and adhesiveness parameters. The interactions between excipients were confirmed by ATR-FTIR and molecular docking. The tribology assay revealed similar friction values at room and physiological temperature, and when testing different skin types. In conclusion, the physical properties and the performance evaluation reported in this study indicate that this innovative film-forming system can be used to prevent skin lesions caused by the continuous use of protective masks.
最近的 COVID-19 大流行导致面部口罩的使用增加,由于口罩对皮肤持续的压力、张力和摩擦力,可能会导致皮肤损伤。一种预防方法是在面部和口罩之间使用敷料。然而,敷料的保护效果以及其使用是否会影响口罩的效率仍然存在不确定性。本研究旨在开发并测试一种基于明胶的水凝胶贴剂,将其放置在口罩和面部区域之间,以达到预防效果。设计实验与质量源于设计方法工具被用于贴剂的开发,通过流变学评估、ATR-FTIR 和分子对接研究进行体外特性分析。此外,还进行了摩擦学研究以测试贴剂的性能。结果表明,辅料的添加提高了胶凝温度、弹性和粘性参数。ATR-FTIR 和分子对接证实了辅料之间的相互作用。摩擦学试验表明,在室温及生理温度下,以及测试不同肤质时,摩擦值相似。总之,本研究报告的物理性能和性能评估表明,这种创新的成膜系统可用于预防因持续使用防护口罩而导致的皮肤损伤。