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阴离子聚合物和10纳米Fe₃O₄@UA伤口敷料支持人类胎儿干细胞的正常发育,并具有很强的抗菌性能。

Anionic polymers and 10 nm Fe₃O₄@UA wound dressings support human foetal stem cells normal development and exhibit great antimicrobial properties.

作者信息

Grumezescu Alexandru Mihai, Holban Alina Maria, Andronescu Ecaterina, Mogoşanu George Dan, Vasile Bogdan Stefan, Chifiriuc Mariana Carmen, Lazar Veronica, Andrei Eugen, Constantinescu Andrei, Maniu Horia

机构信息

University Politehnica of Bucharest, Faculty of Applied Chemistry and Materials Science, Department of Science and Engineering of Oxide Materials and Nanomaterials, Polizu Street No. 1-7, 011061 Bucharest, Romania.

University of Bucharest, Faculty of Biology, Microbiology Department, Aleea Portocalelor, No. 1-3, 060101 Bucharest, Romania.

出版信息

Int J Pharm. 2014 Mar 25;463(2):146-54. doi: 10.1016/j.ijpharm.2013.08.026. Epub 2013 Aug 29.

Abstract

The aims of this study were the development, characterization and bioevaluation of a novel biocompatible, resorbable and bio-active wound dressing prototype, based on anionic polymers (sodium alginate--AlgNa, carboximethylcellulose--CMC) and magnetic nanoparticles loaded with usnic acid (Fe₃O₄@UA). The antimicrobial activity was tested against Staphylococcus aureus grown in biofilms. The biocompatibility testing model included an endothelial cell line from human umbilical vein and human foetal progenitor cells derived from the amniotic fluid, that express a wide spectrum of surface molecules involved in different vascular functions and inflammatory response, and may be used as skin regenerative support. The obtained results demonstrated that CMC/Fe₃O₄@UA and AlgNa/Fe₃O₄@UA are exhibiting structural and functional properties that recommend them for further applications in the biomedical field. They could be used alone or coated with different bio-active compounds, such as Fe₃O₄@UA, for the development of novel, multifunctional porous materials used in tissues regeneration, as antimicrobial substances releasing devices, providing also a mechanical support for the eukaryotic cells adhesion, and exhibiting the advantage of low cytotoxicity on human progenitor cells. The great antimicrobial properties exhibited by the newly synthesized nano-bioactive coatings are recommending them as successful candidates for improving the implanted devices surfaces used in regenerative medicine.

摘要

本研究的目的是开发、表征和生物评价一种新型的生物相容性、可吸收且具有生物活性的伤口敷料原型,该原型基于阴离子聚合物(海藻酸钠 - AlgNa、羧甲基纤维素 - CMC)以及负载松萝酸的磁性纳米颗粒(Fe₃O₄@UA)。针对在生物膜中生长的金黄色葡萄球菌测试了其抗菌活性。生物相容性测试模型包括来自人脐静脉的内皮细胞系和源自羊水的人胎儿祖细胞,这些细胞表达参与不同血管功能和炎症反应的多种表面分子,可作为皮肤再生支持物。所得结果表明,CMC/Fe₃O₄@UA 和 AlgNa/Fe₃O₄@UA 展现出结构和功能特性,使其在生物医学领域的进一步应用具有潜力。它们可单独使用,或涂覆不同的生物活性化合物(如 Fe₃O₄@UA),用于开发用于组织再生的新型多功能多孔材料,作为抗菌物质释放装置,还为真核细胞黏附提供机械支持,并对人祖细胞表现出低细胞毒性的优势。新合成纳米生物活性涂层所展现出的强大抗菌性能,使其成为改善再生医学中植入装置表面的成功候选材料。

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