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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Zinc oxide nanoparticles hinder fungal biofilm development in an ancient Egyptian tomb
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Zinc oxide nanoparticles hinder fungal biofilm development in an ancient Egyptian tomb

机译:氧化锌纳米颗粒在古埃及墓中妨碍真菌生物膜发育

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Nanoparticles (NPs) have been proposed as an innovative strategy to prevent fungal colonization of cultural heritage, but until now their efficacy has mainly been proved against fungi in planktonic conditions. Four fungi from microbial alterations of the royal tomb of Tausert and Setnakht in the Valley of the Kings, Thebes, West Bank, Modern Luxor, Egypt, were isolated and identified as Alternaria alternata, Aspergillus niger, Penicillium chrysogenum and P. pinophilum. This work deals with four developing fungal biofilms grown with a colony biofilm approach, and exposed to two concentrations of zinc oxide NPs (0.25 and 0.5%) for 10 days. A significant reduction in the biofilm growth was observed in presence of 0.5% NPs for all fungi, except A. niger. Moreover, the morphology of the fungal biofilm exposed to NPs differed from that of the control, and there was a different polysaccharide to protein ratio in the matrices, and earlier production of coloured compounds and spores. Despite the success of the zinc oxide NPs, this early metabolite production needs to be monitored as a possible source of substances affecting cultural heritage surfaces. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已提出纳米颗粒(NPS)作为预防文化遗产的真菌定植的创新策略,但直到现在,他们的疗效主要是针对浮游病症的真菌。四个真菌从国王,The,西岸,埃及现代卢克斯山谷的Tausert和Setnakht皇家墓葬中的微生物改变,被分离,并被鉴定为alertaria alternata,aspergillus niger,青霉核糖素和p. pinophirum。这项工作涉及具有菌落生物膜的四种发展的真菌生物膜,并暴露于两种浓度的氧化锌NPS(0.25和0.5%)10天。除了A.尼日尔之外,在所有真菌的情况下,观察到生物膜生长的显着降低。此外,暴露于NPS的真菌生物膜的形态与对照的差异不同,并且存在不同的多糖与基质中的蛋白质比,以及早期产生有色化合物和孢子。尽管氧化锌NPS的成功,但需要监测这种早期代谢产物的产生作为影响文化遗产表面的可能的物质来源。 (c)2017 Elsevier Ltd.保留所有权利。

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