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基于胶体银的新一代抗菌产品。

New Generation of Antibacterial Products Based on Colloidal Silver.

作者信息

Pascu Bogdan, Negrea Adina, Ciopec Mihaela, Davidescu Corneliu Mircea, Negrea Petru, Gherman Vasile, Duteanu Narcis

机构信息

Faculty of Industrial Chemistry and Environmental Engineering, Politehnica University of Timisoara, 2 Piata Victoriei, RO 300006 Timisoara, Romania.

出版信息

Materials (Basel). 2020 Mar 29;13(7):1578. doi: 10.3390/ma13071578.

Abstract

The main objective of the present paper is the green synthesis of colloidal silver by ultrasonication starting from silver nitrate and using soluble starch as the reducing agent. Soluble starch has been used during synthesis because it is a cheap and environmentally friendly reactive. Silver colloid has been characterized by physicochemical methods: UV-VIS spectroscopy, Scanning Electron Microscopy and Energy Dispersive X-Ray spectroscopy. This colloidal material was prepared in order to prove and establish its toxicity on heterotrophic bacteria. Toxicity tests were carried out using test cultures with and without silver colloid with different concentrations. This way was possible to establish the minimum silver concentration that presents a toxic effect against used bacteria. Quantitative evaluation of bacterial growth was performed by using the Most Probable Number method. By counting the bacterial colony number, the antibacterial effect was determined for colloidal silver deposited onto the cotton gauze by adsorption. During the present study, we optimized the adsorption specific parameters: solid:liquid ratio, temperature, contact time, colloidal silver concentration. By thermodynamic, equilibrium and kinetic studies, the adsorptive process mechanism was established.

摘要

本文的主要目标是通过超声处理,以硝酸银为起始原料,使用可溶性淀粉作为还原剂来绿色合成胶体银。合成过程中使用可溶性淀粉是因为它是一种廉价且环保的反应物。已通过物理化学方法对银胶体进行了表征:紫外可见光谱、扫描电子显微镜和能量色散X射线光谱。制备这种胶体材料是为了证明并确定其对异养细菌的毒性。使用含有不同浓度银胶体和不含银胶体的测试培养物进行毒性测试。通过这种方式能够确定对所用细菌产生毒性作用的最低银浓度。采用最大可能数法对细菌生长进行定量评估。通过计算细菌菌落数,确定了通过吸附沉积在纱布上的胶体银的抗菌效果。在本研究中,我们优化了吸附的特定参数:固液比、温度、接触时间、胶体银浓度。通过热力学、平衡和动力学研究,确定了吸附过程机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b558/7177337/ef6adef5b468/materials-13-01578-g001.jpg

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