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The Design Characterization and Antibacterial Activity of Heat and Silver Crosslinked Poly(Vinyl Alcohol) Hydrogel Forming Dressings Containing Silver Nanoparticles

机译:含银纳米粒子的热和银交联聚(乙烯醇)水凝胶的设计表征和抗菌活性

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摘要

The prompt treatment of burn wounds is essential but can be challenging in remote parts of Africa, where burns from open fires are a constant hazard for children and suitable medical care may be far away. Consequently, there is an unmet need for an economical burn wound dressing with a sustained antimicrobial activity that might be manufactured locally at low cost. This study describes and characterizes the novel preparation of a silver nitrate-loaded/poly(vinyl alcohol) (PVA) film. Using controlled heating cycles, films may be crosslinked with in situ silver nanoparticle production using only a low heat oven and little technical expertise. Our research demonstrated that heat-curing of PVA/silver nitrate films converted the silver to nanoparticles. These films swelled in water to form a robust, wound-compatible hydrogel which exhibited controlled release of the antibacterial silver nanoparticles. An optimal formulation was obtained using 5% (w/w) silver nitrate in PVA membrane films that had been heated at 140 °C for 90 min. Physical and chemical characterization of such films was complemented by in vitro studies that confirmed the effective antibacterial activity of the released silver nanoparticles against both gram positive and negative bacteria. Overall, these findings provide economical and simple methods to manufacture stable, hydrogel forming wound dressings that release antibiotic silver over prolonged periods suitable for emergency use in remote locations.
机译:燃烧伤口的及时治疗是必不可少的,但可能在非洲的偏远地区具有挑战性,开放火灾的烧伤是儿童的持续危害,合适的医疗可能很远。因此,具有持续抗微生物活性的经济燃烧伤口敷料的未满足需要,该持续抗微生物活性可以以低成本局部地制造。本研究描述并表征了硝酸银含银/聚(乙烯醇)(PVA)膜的新制剂。使用受控加热循环,可以仅使用低热烘箱和少的技术专业知识与原位银纳米粒子产生交联。我们的研究表明,PVA /硝酸银膜的热固化将银转化为纳米颗粒。这些薄膜在水中膨胀以形成稳健的伤口相容的水凝胶,其表现出抗菌银纳米颗粒的控释。在PVA膜膜中使用5%(W / W)硝酸盐在140℃下在140℃下加热90分钟获得最佳制剂。通过体外研究互补的这种薄膜的物理和化学表征,其证实释放的银纳米粒子的有效抗菌活性对克革兰氏阳性和阴性细菌。总的来说,这些发现提供了经济型和简单的方法来制造稳定的水凝胶形成伤口敷料,这些方法在延长时期释放抗生素银,适合在远程位置的紧急情况下使用。

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