Zugic Ana, Tadic Vanja, Savic Snezana
Institute for Medicinal Plant Research "Dr. Josif Pancic", Tadeusa Koscuska 1, 11000 Belgrade, Serbia.
Department of Pharmaceutical Technology and Cosmetology, Faculty of Pharmacy, University of Belgrade, 11000 Belgrade, Serbia.
Pharmaceutics. 2020 Feb 15;12(2):156. doi: 10.3390/pharmaceutics12020156.
Usnic acid is one of the most investigated lichen secondary metabolites, with several proven biological properties with potential medical relevance. However, its unfavorable physico-chemical properties, as well as observed hepatotoxicity, have discouraged wide-range utilization of usnic acid as a promising therapeutic agent. In accordance with the growing research interest in the development of nanotechnology, especially in the arena of preparations based on natural sources of medicinal compounds, usnic acid incorporated into nano- and microsized colloidal carriers has been a subject of a large number of publications. Therefore, this review discusses the overall results of the studies dealing with usnic acid encapsulated into lipid-based, polymeric and nonorganic micro- and/or nanocarriers, as potential drug delivery systems for this natural compound, in an attempt to introduce its usage as a potential antitumor, antimicrobial, wound-healing, antioxidative and anti-inflammatory drug.
松萝酸是研究最多的地衣次生代谢产物之一,具有多种已被证实的具有潜在医学相关性的生物学特性。然而,其不利的物理化学性质以及观察到的肝毒性,阻碍了松萝酸作为一种有前景的治疗剂的广泛应用。随着对纳米技术发展的研究兴趣日益增加,特别是在基于天然药用化合物来源的制剂领域,负载于纳米和微米级胶体载体中的松萝酸已成为大量出版物的主题。因此,本综述讨论了有关将松萝酸封装到脂质基、聚合物基和无机微载体和/或纳米载体中的研究的总体结果,这些载体作为这种天然化合物的潜在药物递送系统,旨在介绍其作为潜在的抗肿瘤、抗菌、伤口愈合、抗氧化和抗炎药物的用途。