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Efficient surface functionalization of wound dressings by a phytoactive nanocoating refractory to Candida albicans biofilm development

机译:耐白色念珠菌生物膜形成的植物活性纳米涂层对伤口敷料的有效表面功能化

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The present study reports the fabrication and characterization of a novel nanostructured phyto-bioactive coated rayon/polyester wound dressing (WD) surface refractory to Candida albicans adhesion, colonization and biofilm formation, based on functionalized magnetite nanoparticles and Anethum graveolens (AG) and Salvia officinalis (SO) essential oils (EOs). TEM, XRD, TGA, FT-IR were used for the characterization of the fabricated nanobiocoated WDs. Using magnetic nanoparticles for the stabilization and controlled release of EOs, the activity of natural volatile compounds is significantly enhanced and their effect is stable during time. For this reason the nanobiocoated surfaces exhibited a longer term anti-biofilm effect, maintained for at least 72 h. Besides their excellent anti- adherence properties, the proposed solutions exhibit the advantage of using vegetal natural compounds, which are less toxic and easily biodegradable in comparison with synthetic antifungal drugs, representing thus promising approaches for the development of successful ways to control and prevent fungal biofilms associated infections.
机译:本研究报告了基于功能化磁铁矿纳米颗粒和薄荷草(Anethumgravolens)(AG)和丹参(Salvia officinalis)的新型纳米结构植物生物活性涂层人造丝/聚酯伤口敷料(WD)表面难于白色念珠菌粘附,定居和生物膜形成的制备和表征(SO)香精油(EOs)。 TEM,XRD,TGA,FT-IR用于表征纳米生物包覆的WD。使用磁性纳米颗粒稳定和控制EO的释放,可以显着增强天然挥发性化合物的活性,并且其作用在一段时间内是稳定的。由于这个原因,纳米生物涂层的表面表现出长期的抗生物膜作用,保持至少72小时。除了具有出色的抗粘附性能外,拟议的解决方案还显示出使用植物性天然化合物的优势,与合成抗真菌药相比,植物性天然化合物毒性小且易于生物降解,因此代表了开发成功的方法来控制和预防真菌生物膜的有希望的方法相关感染。

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