首页> 美国卫生研究院文献>ACS Omega >Fabrication of Poly(vinyl alcohol)/Chitosan/Bidenspilosa Composite Electrospun Nanofibers withEnhanced Antibacterial Activities
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Fabrication of Poly(vinyl alcohol)/Chitosan/Bidenspilosa Composite Electrospun Nanofibers withEnhanced Antibacterial Activities

机译:聚乙烯醇/壳聚糖/拜登的制备pilosa复合电纺纳米纤维与增强抗菌活性

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摘要

Due to the current challenges faced by the increasing rate of drug-resistant bacteria, attention is gradually shifting from synthetic antimicrobial chemical compounds to natural products that are ecofriendly with a wide spectrum of properties. The aim of this research was to successfully fabricate electrospun nanofibers from poly(vinyl alcohol) (PVA), PVA blended with Bidens pilosa and chitosan composite blends and investigate their potential antibacterial activities against Escherichia coli and Staphylococcus aureus. Fabrication of nanofibers was performed by the electrospinning technique, which applies high voltage on the polymer, forcing it to spin off as a jet onto a plate collector. Characterization of the nanofibers was successfully performed by scanning electron microscopy and Fourier transform infrared spectroscopy. Antibacterial assessment was carried out by colony forming unit enumeration. The results obtained revealed a 12% increase in growth inhibition of bacteria in composite nanofibers as compared with their parental forms, which were >91 and 79%, respectively. Chitosan nanofibershavebeen extensively researched, and their antibacterial properties havebeen studied. However B. pilosa antibacterialproperties in a nanofiber form have not been previously reported.These composite nanofibers open new avenues toward using natural materialsas potent antibacterial agents.
机译:由于耐药细菌的增加所面临的当前挑战,人们的注意力正逐渐从合成的抗菌化合物转移到具有广泛特性的生态友好型天然产品。这项研究的目的是成功地从聚乙烯醇(PVA),掺有Bidens pilosa的PVA和壳聚糖复合混合物中制备电纺纳米纤维,并研究其对大肠杆菌和金黄色葡萄球菌的潜在抗菌活性。纳米纤维的制造通过静电纺丝技术进行,该技术向聚合物施加高电压,迫使其以射流的形式旋流到板状集电器上。通过扫描电子显微镜和傅立叶变换红外光谱法成功地进行了纳米纤维的表征。通过菌落形成单位计数进行抗菌评估。获得的结果表明,复合纳米纤维中细菌的生长抑制能力比其亲本形式增加了12%,分别大于91%和79%。壳聚糖纳米纤维有经过广泛研究,其抗菌性能已经经过研究。但是B. pilosa具有抗菌作用以前尚未报道过纳米纤维形式的性质。这些复合纳米纤维为使用天然材料开辟了新途径。作为有效的抗菌剂。

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