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Biosynthesis of Silver Nanoparticles Using Pine Pollen and Evaluation of the Antifungal Efficiency

机译:松花粉生物合成银纳米颗粒及其抗真菌功效的评价

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Background: Nanoparticles have been applied to medicine, hygiene, pharmacy and dentistry, and will bring significant advances in the prevention, diagnosis, drug delivery and treatment of disease. Green synthesis of metal nanoparticles has a very important role in nanobiotechnology, allowing production of non-toxic and eco-friendly particles.? Objectives: Green synthesis of silver nanoparticles (AgNPs) was studied using pine pollen as a novel, cost-effective, simple and non-hazardous bioresource. The antifungal activity of the synthesized AgNPs was investigated in vitro. Materials and Methods: Biosynthesis of AgNPs was conducted using pollen of pine (as a novel bioresource) acting as both reducing and capping agents. AgNPs were characterized using UV-visible spectroscopy, X-ray diffraction and transmission electron microscopy. In evaluation for antifungal properties, the synthesized AgNPs represented significant in vitro inhibitory effects on Neofusicoccum parvum cultures. Results: Pine pollen can mediate biosynthesis of colloidal AgNPs with an average size of 12 nm. AgNPs were formed at 22°C and observed to be highly stable up to three months without precipitation or decreased antifungal property. AgNPs showed significant inhibitory effects against Neofusicoccum parvum. Conclusion:The first report for a low-cost, simple, well feasible and eco-friendly procedure for biosynthesis of AgNPs was presented. The synthesized AgNPs by pine pollen were nontoxic and eco-friendly, and can be employed for large-scale production. The nanoparticles showed strong effect on quantitative inhibition and disruption of antifungal growth. ?
机译:背景:纳米颗粒已应用于医学,卫生,药学和牙科领域,将在预防,诊断,药物输送和疾病治疗方面取得重大进展。金属纳米颗粒的绿色合成在纳米生物技术中具有非常重要的作用,可以生产无毒且环保的颗粒。目的:使用松花粉作为一种新颖,具有成本效益,简单且无害的生物资源,研究了银纳米粒子(AgNPs)的绿色合成。在体外研究了合成的AgNPs的抗真菌活性。材料和方法:AgNPs的生物合成是使用松花粉(一种新型生物资源)作为还原剂和封端剂来进行的。 AgNPs使用紫外可见光谱,X射线衍射和透射电子显微镜进行表征。在抗真菌特性的评估中,合成的AgNPs对小镰刀菌的体外培养具有明显的抑制作用。结果:松花粉可以介导胶体AgNP的生物合成,平均大小为12 nm。 AgNPs在22°C时形成,观察到在长达三个月的时间里都高度稳定,没有沉淀或抗真菌性能下降。 AgNPs对小镰刀菌具有显着的抑制作用。结论:首次报道了低成本,简单,可行且环保的AgNPs生物合成方法。松花粉合成的AgNPs无毒且环保,可用于大规模生产。纳米颗粒对定量抑制和抗真菌生长的破坏表现出强大的作用。 ?

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