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醋酸纤维素-具有抗菌活性的精油纳米胶囊,可用于生物医学应用。

Cellulose acetate - essential oil nanocapsules with antimicrobial activity for biomedical applications.

机构信息

Center for Micro-BioRobotics, Istituto Italiano di Tecnologia (IIT), Viale Rinaldo Piaggio 34, Pontedera, Pisa, 56025, Italy.

Nicolae Simionescu Institute of Cellular Biology and Pathology, B.P. Hasdeu St., No. 8, Bucharest, 030167, Romania.

出版信息

Colloids Surf B Biointerfaces. 2018 Dec 1;172:471-479. doi: 10.1016/j.colsurfb.2018.08.069. Epub 2018 Aug 31.

Abstract

This study aimed to obtain bioactive nanosystems by combining cellulose acetate with three selected essential oils (EOs) to create spherical nanocapsules (NCs) using the solvent/anti-solvent technique. The biological activity of the obtained NCs was promoted by the use of some antimicrobial EOs: Peppermint, Cinnamon and lemongrass which were grafted on the cellulose acetate molecules. Due to their chemistry, such as long hydrocarbon tails and heads with functional groups these EOs were playing also the role of surfactant-like substance facilitating the formation of NCs. A dispersion of NCs was obtained in water and various spectroscopy techniques used to examine their size, morphology and chemistry. Dynamic light scattering calculate the size of the NCs whereas scanning electron microscopy showed their morphology. Fluorescent microscopy and Raman spectroscopy proved the attachment of the EOs in the cellulose acetate molecules. The antimicrobial activity of the obtained nanomaterials was tested against four microbial strains (bacteria: Staphylococcus aureus, Pseudomonas aeruginosa, Escherichia coli, and a yeast strain of Candida albicans). The obtained results demonstrated that such NCs can be used in a variety of applications including medical, pharmaceutical recipients and in household products for treating or preventing microbial colonization and biofilm development.

摘要

本研究旨在通过将醋酸纤维素与三种精选的精油(EOs)结合,使用溶剂/反溶剂技术来创建具有球形纳米胶囊(NCs)。所获得的 NCs 的生物活性通过使用一些抗菌 EOs 来增强:薄荷、肉桂和柠檬草,它们被嫁接到醋酸纤维素分子上。由于它们的化学性质,如长烃尾和带有官能团的头部,这些 EOs 还起到了表面活性剂样物质的作用,有利于 NCs 的形成。NCs 的分散体在水中获得,并使用各种光谱技术来检查它们的大小、形态和化学性质。动态光散射计算 NCs 的大小,而扫描电子显微镜显示它们的形态。荧光显微镜和拉曼光谱证明了 EOs 附着在醋酸纤维素分子上。所获得的纳米材料的抗菌活性针对四种微生物菌株(细菌:金黄色葡萄球菌、铜绿假单胞菌、大肠杆菌和白色念珠菌酵母菌株)进行了测试。所得结果表明,这种 NCs 可用于多种应用,包括医学、制药和家用产品,用于治疗或预防微生物定植和生物膜的形成。

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