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In situ synthesis of silver-nanoparticles/bacterial cellulose composites for slow-released antimicrobial wound dressing

机译:纳米银/细菌纤维素复合材料的原位合成用于缓释抗菌伤口敷料

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Bacterial cellulose has attracted increasing attention as a novel wound dressing material, but it has no antimicrobial activity, which is one of critical skin-barrier functions in wound healing. To overcome such deficiency, we developed a novel method to synthesize and impregnate silver nanoparticles on to bacterial cellulose nanofibres (AgNP-BC). Uniform spherical silver nano-particles (10-30 nm) were generated and self-assembled on the surface of BC nano-fibers, forming a stable and evenly distributed Ag nanoparticles coated BC nanofiber. Such hybrid nanostructure prevented Ag nanoparticles from dropping off BC network and thus minimized the toxicity of nanoparticles. Regardless the slow Ag~+ release, AgNP-BC still exhibited significant antibacterial activities with more than 99% reductions in Escherichia coli. Staphylococcus aureus and Pseudomonas aeruginosa. Moreover, AgNP-BC allowed attachment and growth of epidermal cells with no cytotoxicity emerged. The results demonstrated that AgNP-BC could reduce inflammation and promote wound healing.
机译:细菌纤维素作为一种新型的伤口敷料已引起越来越多的关注,但它没有抗菌活性,而抗菌活性是伤口愈合中至关重要的皮肤屏障功能之一。为了克服这种缺陷,我们开发了一种新颖的方法来将银纳米颗粒合成并浸渍到细菌纤维素纳米纤维(AgNP-BC)上。产生均匀的球形银纳米粒子(10-30 nm),并在BC纳米纤维的表面上自组装,形成稳定且分布均匀的Ag纳米颗粒包覆的BC纳米纤维。这样的杂化纳米结构防止了Ag纳米颗粒从BC网络脱落,从而使纳米颗粒的毒性最小化。不管缓慢的Ag〜+释放如何,AgNP-BC仍然表现出显着的抗菌活性,其中大肠杆菌的减少超过99%。金黄色葡萄球菌和铜绿假单胞菌。此外,AgNP-BC允许表皮细胞的附着和生长而没有细胞毒性的出现。结果表明,AgNP-BC可以减少炎症并促进伤口愈合。

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