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纳米银抗真菌。银纳米颗粒作为一种有效的杀菌因子。

Nanosilver against fungi. Silver nanoparticles as an effective biocidal factor.

作者信息

Pulit Jolanta, Banach Marcin, Szczygłowska Renata, Bryk Mirosław

机构信息

Cracow University of Technology, Institute of Inorganic Chemistry and Technology, Kraków, Poland.

Silesian Environmental Ph.D. Studies Centre, Central Mining Institute, Katowice, Poland.

出版信息

Acta Biochim Pol. 2013;60(4):795-8.

Abstract

The work presents a method of obtaining an aqueous raspberry extract as well as its physicochemical and analytical characteristics. The paper also contains a description of the method of preparation of nanosilver suspensions based on this extract. The raspberry extract served as a source of phenolic compounds which acted as both reducing and stabilizing agents. Suspensions of silver nanoparticles were obtained with the use of chemical reduction method. The silver ions concentration, pH value and temperature of samples incubation were independent variables. The next step of the research was to measure the antifungal activity of the received silver nanoparticles as well as to perform a mycological efficacy resistance analysis of the tested preparations in relation to different concentrations of nanostructured silver. Tests were conducted in compliance with the Eucast guidelines. The results of microbiological study of (the samples') biocidal effect against Cladosporium cladosporoides and Aspergillus niger are described. It was found that using nanosilver suspension at the concentration of 50 ppm inhibited the growth of Cladosporium cladosporoides and Aspergillus niger by 90% and 70%, respectively.

摘要

该研究展示了一种获取树莓水提取物的方法及其理化和分析特性。论文还包含了基于该提取物制备纳米银悬浮液的方法描述。树莓提取物作为酚类化合物的来源,兼具还原剂和稳定剂的作用。通过化学还原法获得了银纳米颗粒悬浮液。银离子浓度、样品孵育的pH值和温度为自变量。研究的下一步是测量所得银纳米颗粒的抗真菌活性,并针对不同浓度的纳米结构银对受试制剂进行真菌学功效抗性分析。测试按照欧洲抗菌药物敏感性试验委员会(Eucast)指南进行。描述了(样品)对枝孢霉菌和黑曲霉的杀菌作用的微生物学研究结果。发现使用浓度为50 ppm的纳米银悬浮液分别抑制枝孢霉菌和黑曲霉生长90%和70%。

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