DocumentCode :
56651
Title :
Prolonged antimicrobial activity of unique sandwich-structured silver nanocomposites
Author :
Yaohua Dong ; Tao Liu ; Xiao Song ; Lihua Dong ; Zhangwei Guo ; Yuanyuan Shen
Author_Institution :
Coll. of Marine Sci. & Eng., Shanghai Maritime Univ., Shanghai, China
Volume :
9
Issue :
8
fYear :
2014
fDate :
Aug. 2014
Firstpage :
552
Lastpage :
555
Abstract :
In this reported work, silver (Ag) nanocomposites (NCs) with three different structures were prepared to confirm that structure has significant influence on the antibacterial properties. Ag nanoparticles (NPs) were prepared by the following three methods: first, by deposition of Ag on the surface of silica-polydopamine spheres by reducing Ag cations (NC1), secondly, by encapsulation of Ag NPs in mesoporous SiO2 with a core-shell structure (NC2) and thirdly, Ag nanocrystals were both decorated on the surface of SiO2 and incorporated into its mesoporous structure (NC3). The key to the successful synthesis of the aforementioned NCs was polydopamine (PD) having the unique reductive ability and powerful adhesive capability. The antibacterial activities of NC1, NC2 and NC3 were evaluated through bacterial growth curves assay carried out on Vibrio natriegens (V. natriegens) strain, a Gram-negative bacterium, supported by observations from transmission electron microscopy. The results demonstrated that in the first three days, the effect of NC1 was more intense on V. natriegens compared with NC2; however, the next seven days revealed the opposite result. Therefore NC3 exhibited the most effective antimicrobial treatments for ten days.
Keywords :
adhesion; antibacterial activity; cellular biophysics; mesoporous materials; microorganisms; nanocomposites; nanofabrication; nanomedicine; nanoparticles; nanoporous materials; patient treatment; silicon compounds; silver; surface structure; transmission electron microscopy; Ag cations; Ag nanocrystals; Ag-SiO2; Gram-negative bacterium; NC1 antibacterial activity; NC2 antibacterial activity; NC3 antibacterial activity; V. natriegens strain; Vibrio natriegens strain; adhesive capability; antimicrobial treatments; bacterial growth curves; core-shell structure; mesoporous structure; nanoparticles; polydopamine structure; silica-polydopamine sphere surface; surface structure; transmission electron microscopy; unique sandwich-structured silver nanocomposites;
fLanguage :
English
Journal_Title :
Micro & Nano Letters, IET
Publisher :
iet
ISSN :
1750-0443
Type :
jour
DOI :
10.1049/mnl.2014.0106
Filename :
6891920
Link To Document :
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