Department of Pharmacy and Pharmaceutical Technology and Parasitology, University of Valencia, Avda. Vicente A. Estelles SN, Burjassot (Valencia), Spain.
Department of Pharmacy and Pharmaceutical Technology and Parasitology, University of Valencia, Avda. Vicente A. Estelles SN, Burjassot (Valencia), Spain.
J Control Release. 2023 Mar;355:624-654. doi: 10.1016/j.jconrel.2023.02.006. Epub 2023 Feb 17.
Lipid vesicles can provide a cost-effective enhancement of skin drug absorption when vesicle production process is optimised. It is an important challenge to design the ideal vesicle, since their properties and features are related, as changes in one affect the others. Here, we review the main components, preparation and characterization methods commonly used, and the key properties that lead to highly efficient vesicles for transdermal drug delivery purposes. We stand by size, deformability degree and drug loading, as the most important vesicle features that determine the further transdermal drug absorption. The interest in this technology is increasing, as demonstrated by the exponential growth of publications on the topic. Although long-term preservation and scalability issues have limited the commercialization of lipid vesicle products, freeze-drying and modern escalation methods overcome these difficulties, thus predicting a higher use of these technologies in the market and clinical practice.
脂质体可以在优化囊泡生产工艺时提供具有成本效益的皮肤药物吸收增强作用。设计理想的囊泡是一个重要的挑战,因为它们的性质和特征是相关的,因为一个变化会影响其他变化。在这里,我们回顾了常用的主要成分、制备和表征方法,以及导致用于透皮药物递送目的的高效囊泡的关键性质。我们认为,大小、变形程度和药物载药量是决定透皮药物吸收的最重要的囊泡特征。随着关于该主题的出版物呈指数级增长,人们对该技术的兴趣日益增加。尽管脂质体产品的长期保存和可扩展性问题限制了其商业化,但冷冻干燥和现代升级方法克服了这些困难,因此预测这些技术在市场和临床实践中的应用将会更高。