姜黄素
纳米载体
脂质体
生物相容性
材料科学
体内
药物输送
小泡
化学
生物医学工程
生物物理学
纳米技术
生物化学
医学
膜
生物技术
冶金
生物
作者
Maria Letizia Manca,Ines Castangia,Marco Zaru,Amparo Nácher,Donatella Valenti,Xavier Fernàndez‐Busquets,Anna Maria Fadda,Maria Manconi
出处
期刊:Biomaterials
[Elsevier BV]
日期:2015-08-19
卷期号:71: 100-109
被引量:193
标识
DOI:10.1016/j.biomaterials.2015.08.034
摘要
In the present work new highly biocompatible nanovesicles were developed using polyanion sodium hyaluronate to form polymer immobilized vesicles, so called hyalurosomes. Curcumin, at high concentration was loaded into hyalurosomes and physico-chemical properties and in vitro/in vivo performances of the formulations were compared to those of liposomes having the same lipid and drug content. Vesicles were prepared by direct addition of dispersion containing the polysaccharide sodium hyaluronate and the polyphenol curcumin to a commercial mixture of soy phospholipids, thus avoiding the use of organic solvents. An extensive study was carried out on the physico-chemical features and properties of curcumin-loaded hyalurosomes and liposomes. Cryogenic transmission electron microscopy and small-angle X-ray scattering showed that vesicles were spherical, uni- or oligolamellar and small in size (112-220 nm). The in vitro percutaneous curcumin delivery studies on intact skin showed an improved ability of hyalurosomes to favour a fast drug deposition in the whole skin. Hyalurosomes as well as liposomes were biocompatible, protected in vitro human keratinocytes from oxidative stress damages and promoted tissue remodelling through cellular proliferation and migration. Moreover, in vivo tests underlined a good effectiveness of curcumin-loaded hyalurosomes to counteract 12-O-tetradecanoilphorbol (TPA)-produced inflammation and injuries, diminishing oedema formation, myeloperoxydase activity and providing an extensive skin reepithelization. Thanks to the one-step and environmentally-friendly preparation method, component biocompatibility and safety, good in vitro and in vivo performances, the hyalurosomes appear as promising nanocarriers for cosmetic and pharmaceutical applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI