Department of Chemical and Biochemical Engineering, The University of IA, Iowa City, IA, United States.
Department of Pharmaceutical Sciences and Experimental Therapeutics, The University of Iowa, Iowa City, IA, United States.
Drug Dev Ind Pharm. 2023 Jul;49(7):456-466. doi: 10.1080/03639045.2023.2229919. Epub 2023 Jul 10.
Sprayable hydrogel formulations are promising topical treatments for skin wounds due to their ability to reduce application pain, prolong drug release, and provide moisture to promote skin healing. These viscoelastic materials, however, present challenges in spray ability which can be overcome using a thermoreversible hydrogels sprayed as lower viscosity liquids at cooler temperatures. The purpose of this research was to evaluate the impact of thermoreversible hydrogel formulation and device characteristics on topical spray patterns and to develop metrics to accurately describe surface coverage.
Cold solutions of Pluronic F127 were prepared at 15, 17, and 20% (w/w) and tested to determine their rheological properties. Formulations were sprayed from hand-held atomizing pump dispersers under cold conditions and two distinct areas of their spray patterns analyzed: the concentrated core and the full spray pattern. Traditional analysis of spray patterns was conducted to determine major and minor axes, ovality, and total area. In addition, new scripts were developed to evaluate the concentrated core.
The full spray pattern analysis quantified the total area over which the spray would extend a flat surface, while the concentrated core analysis quantified the continuous region where a drug dose would be concentrated. The combination of formulation viscosity, sprayer nozzle, and spray distance produced spray patterns from highly concentrated to highly dispersed. These parameters can be controlled to generate desired hydrogel spray patterns for application on skin surfaces.
The developed metrics provide a basis for topical spray analysis that can inform future product performance.
喷雾水凝胶制剂因其可减少施药疼痛、延长药物释放时间并提供保湿以促进皮肤愈合,因而有望成为皮肤创伤的局部治疗方法。然而,这些粘弹性材料在喷雾能力方面存在挑战,可以通过以较低的粘度在较冷的温度下喷雾作为热可逆水凝胶来克服。本研究旨在评估热可逆水凝胶配方和装置特性对局部喷雾模式的影响,并开发用于准确描述表面覆盖率的指标。
制备了 15%、17%和 20%(w/w)浓度的 Pluronic F127 冷溶液,并测试了它们的流变性能。在冷条件下,用手持雾化泵分散器喷雾制剂,并分析了其喷雾模式的两个不同区域:浓缩核心区和全喷雾模式区。传统的喷雾模式分析用于确定长轴和短轴、椭圆度和总面积。此外,还开发了新的脚本来评估浓缩核心区。
全喷雾模式分析量化了喷雾会扩展到平坦表面的总面积,而浓缩核心分析则量化了药物剂量会集中的连续区域。制剂粘度、喷雾器喷嘴和喷雾距离的组合产生了从高度浓缩到高度分散的喷雾模式。可以控制这些参数以生成用于皮肤表面应用的所需水凝胶喷雾模式。
所开发的指标为局部喷雾分析提供了基础,可指导未来的产品性能。