首页> 美国卫生研究院文献>Journal of Fungi >Silver/Chitosan Nanocomposites: Preparation and Characterization and Their Fungicidal Activity against Dairy Cattle Toxicosis Penicillium expansum
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Silver/Chitosan Nanocomposites: Preparation and Characterization and Their Fungicidal Activity against Dairy Cattle Toxicosis Penicillium expansum

机译:银/壳聚糖纳米复合材料:制备表征及其对奶牛中毒青霉的杀真菌活性。

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摘要

This work aimed to evaluate the fungicide activity of chitosan-silver nanocomposites (Ag-Chit-NCs) against from feed samples. The physicochemical properties of nanocomposites were characterized by X-ray fluorescence analysis (XRF), small-angle X-ray scattering (SAXS), X-ray photoelectron spectroscopy (XPS), and transmission electron microscopy (TEM). The morphological integrity of the nanohybrid was confirmed by electron transmission. By the data of RFA (X-ray fluorescent analysis), the contents of Ag in Ag-chitosan composite were 5.9 w/w%. The size distribution of the Ag nanoparticles incorporated in the chitosan matrix was investigated by SAXS. The main part of the size heterogeneity distribution in the chitosan matrix corresponds to the portion of small particles (3–4 nm). TEM analysis revealed a spherical morphology in the form of non-agglomerated caps, and 72% of the nanoparticles measured up to 4 nm. The minimum inhibitory concentration of NCs was evaluated in petri dishes. Three different concentrations were tested for antifungal activity against the mycotoxigenic strain. Changes in the mycelium structure of fungi by scanning electron microscopy (SEM) were observed to obtain information about the mode of action of Ag-Chit-NCs. It was shown that NC-Chit-NCs with sizes in the range from 4 to 10 nm have internalized sizes in cells, form agglomerates in the cytoplasm, and bind to cell organelles. Besides, their ability to influence protein and DNA fragmentation was examined in . SDS-PAGE explains the apparent cellular protein response to the presence of various Ag-Chit-NCs. The intensity of hyphal cell protein lines treated with Ag-Chit-NCs was very thin, indicating that high molecular weight proteins are largely prevented from entering the electrophoretic gel, which reflects cellular protein modification and possible damage caused by the binding of several protein fragments to Ag-Chit-NCs. The current results indicate that Ag-Chit-NCs <10 nm in size have significant antifungal activity against , the causative agent of blue mold-contaminated dairy cattle feed.
机译:这项工作旨在评估壳聚糖-银纳米复合材料(Ag-Chit-NCs)对饲料样品的杀菌活性。通过X射线荧光分析(XRF),小角X射线散射(SAXS),X射线光电子能谱(XPS)和透射电子显微镜(TEM)表征了纳米复合材料的理化性质。通过电子传输证实了纳米杂化物的形态完整性。根据RFA(X射线荧光分析)的数据,Ag-壳聚糖复合物中Ag的含量为5.9w / w%。通过SAXS研究了掺入壳聚糖基质中的Ag纳米颗粒的尺寸分布。壳聚糖基质中大小不均一性分布的主要部分对应于小颗粒(3-4 nm)的部分。 TEM分析显示非团聚帽形式的球形形态,并且有72%的纳米颗粒测量到4 nm。在培养皿中评估NCs的最小抑制浓度。测试了三种不同的浓度对霉菌毒素菌株的抗真菌活性。通过扫描电子显微镜(SEM)观察到真菌菌丝体结构的变化,以获得有关Ag-Chit-NCs作用方式的信息。结果表明,大小在4到10 nm之间的NC-Chit-NC在细胞中具有内在的大小,在细胞质中形成团聚体,并与细胞器结合。此外,他们还研究了它们影响蛋白质和DNA片段化的能力。 SDS-PAGE解释了对各种Ag-Chit-NC的存在的明显细胞蛋白反应。用Ag-Chit-NCs处理的菌丝细胞蛋白系的强度非常薄,这表明很大程度上阻止了高分子量蛋白进入电泳凝胶,这反映了细胞蛋白的修饰以及由于几种蛋白片段与蛋白的结合而引起的可能的破坏。 Ag-Chit-NC。目前的结果表明,尺寸小于10 nm的Ag-Chit-NC对蓝霉菌污染的奶牛饲料的病原菌具有显着的抗真菌活性。

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