利多卡因
渗透
透皮
Zeta电位
析因实验
药物输送
活性成分
剂型
药理学
生物医学工程
材料科学
纳米技术
化学
色谱法
医学
外科
纳米颗粒
计算机科学
膜
机器学习
生物化学
作者
Feria Hasanpour,Mária Budai-Szűcs,Anita Kovács,Rita Ambrus,Orsolya Jójárt‐Laczkovich,Martin Cseh,Zsolt Geretovszky,Ferhan Ayaydin,Szilvia Berkó
标识
DOI:10.1016/j.ijpharm.2024.124377
摘要
full factorial design. The nanosystems were characterized by crystallinity behaviour, particle size, zeta potential, encapsulation efficiency measurements, and one of them was selected for further investigation. Then, NLC gel was formulated for dermal application and compared to a traditional dermal ointment in terms of physicochemical (rheological behaviour) and biopharmaceutical (qualitative Franz diffusion and quantitative Raman investigations) properties. The study also examined the use of 3D printed solid microneedles as active permeation enhancers for these systems, offering a minimally invasive approach to enhance transdermal drug delivery. By actively facilitating drug permeation through the skin, microneedles can complement the passive transport achieved by NLCs, thereby providing an innovative and synergistic approach to improving lidocaine delivery.
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