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New Look on Antifungal Activity of Silver Nanoparticles (AgNPs)

机译:银纳米颗粒(AgNPs)的抗真菌活性的新面貌

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摘要

The progress of research on silver nanoparticles (AgNPs) has led to their inclusion in many consumer products (chemicals, cosmetics, clothing, water filters, and medical devices) as a biocide. Despite the widespread use of AgNPs, their biocidal activity is not yet fully understood and is usually associated with various factors (size, composition, surface, red-ox potential, and concentration) and, obviously, specific features of microorganisms. There are merely a few studies concerning the interaction of molds with AgNPs. Therefore, the determination of the minimal AgNPs concentration required for effective growth suppression of five fungal species ( , and ), involved in the deterioration of construction materials, was particularly important. Inhibition of bacteria ( , and ) and yeasts ( and ) was also assessed as the control of AgNPs effectiveness. AgNPs at the concentrations of 9–10.7 ppm displayed high inhibitory activity against moulds, yeast, and bacteria. The TEM images revealed that 20 nm AgNPs migrated into bacterial, yeast, and fungal cells but aggregated in larger particles (50–100 nm) exclusively inside eukaryotic cells. The aggregation of 20 nm AgNPs and particularly their accumulation in the cell wall, observed for cells, are described here for the first time.
机译:银纳米颗粒(AgNPs)的研究进展使它们作为杀菌剂被包含在许多消费产品(化学制品,化妆品,衣物,滤水器和医疗设备)中。尽管AgNPs的广泛使用,但其杀生物活性尚未完全了解,通常与各种因素(大小,组成,表面,氧化还原电位和浓度)以及微生物的特定特征有关。关于霉菌与AgNP的相互作用只有很少的研究。因此,确定有效抑制5种真菌物种(和)的生长所需的最低AgNPs浓度尤其重要,这涉及建筑材料的劣化。细菌(和)和酵母(和)的抑制作用也被评估为AgNPs有效性的控制。浓度为9–10.7 ppm的AgNP对霉菌,酵母和细菌具有很高的抑制活性。 TEM图像显示20 nm AgNPs迁移到细菌,酵母和真菌细胞中,但聚集在较大的颗粒(50–100 nm)中,仅在真核细胞内聚集。这里首次描述了对细胞观察到的20 nm AgNP的聚集,特别是它们在细胞壁中的积累。

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