Hemicellulose‐Based Nanofibers Decorated In Situ with Silver Nanoparticles for Antibacterial Applications

Mariah Onditi, Geoffrey Bosire, Evans O. Changamu, Catherine Ngila
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Abstract

There is growing evidence that composites made up of nanomaterials and plant extracts are effective in combating drug‐resistant pathogens, which are increasing globally. In this study, a hemicellulose extract from cactus pads (Opuntia ficus indica) is blended with poly(vinyl) acetate and electrospun into fine nanofibers. Further, the electrospun nanofibers are encapsulated with silver nanoparticles (AgNPs), in situ, to form a nanocomposite, whose surface morphology are characterized using a scanning electron microscope (SEM). The SEM images showed smooth nanofiber strands (average diameter = 240 nm), with AgNPs randomly dispersed on them. The antibacterial activity of the nanocomposite is tested against five bacterial species. The results obtained showed that the nanonomposite has strong inhibitory effects against Gram‐positive and Gram‐negative bacteria, whereas the pristine nanofibers showed minimal or no antibacterial activity. This study demonstrates i) successful electrospinning of hemicellulose extracts into fine nanofibers and ii) encapsulation with AgNPs to produce a rigid nanocomposite with antimicrobial characteristics for various applications, especially those that require protection against pathogenic bacteria.
原位装饰银纳米粒子的半纤维素基纳米纤维的抗菌应用
越来越多的证据表明,由纳米材料和植物提取物组成的复合材料可有效对抗全球范围内日益增多的抗药性病原体。在这项研究中,仙人掌(Opuntia ficus indica)的半纤维素提取物与聚(乙烯基)醋酸酯混合并电纺成细纳米纤维。此外,电纺纳米纤维原位封装银纳米粒子(AgNPs),形成纳米复合材料,并使用扫描电子显微镜(SEM)对其表面形态进行表征。扫描电子显微镜图像显示了平滑的纳米纤维股(平均直径 = 240 nm),上面随机分散着 AgNPs。测试了纳米复合材料对五种细菌的抗菌活性。结果表明,纳米复合材料对革兰氏阳性菌和革兰氏阴性菌有很强的抑制作用,而原始纳米纤维的抗菌活性极低或根本没有。这项研究表明:i)成功地将半纤维素提取物电纺成细纳米纤维;ii)用 AgNPs 封装,生产出具有抗菌特性的刚性纳米复合材料,可用于各种应用,尤其是需要防止致病菌的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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