Literature DB >> 16913750

Silver colloid nanoparticles: synthesis, characterization, and their antibacterial activity.

Ales Panacek1, Libor Kvítek, Robert Prucek, Milan Kolar, Renata Vecerova, Nadezda Pizúrova, Virender K Sharma, Tat'jana Nevecna, Radek Zboril.   

Abstract

A one-step simple synthesis of silver colloid nanoparticles with controllable sizes is presented. In this synthesis, reduction of [Ag(NH(3))(2)](+) complex cation by four saccharides was performed. Four saccharides were used: two monosaccharides (glucose and galactose) and two disaccharides (maltose and lactose). The syntheses performed at various ammonia concentrations (0.005-0.20 mol L(-1)) and pH conditions (11.5-13.0) produced a wide range of particle sizes (25-450 nm) with narrow size distributions, especially at the lowest ammonia concentrations. The average size, size distribution, morphology, and structure of particles were determined by dynamic light scattering (DLS), transmission electron microscopy (TEM), and UV/Visible absorption spectrophotometry. The influence of the saccharide structure (monosacharides versus disaccharides) on the size of silver particles is briefly discussed. The reduction of [Ag(NH(3))(2)](+) by maltose produced silver particles with a narrow size distribution with an average size of 25 nm, which showed high antimicrobial and bactericidal activity against Gram-positive and Gram-negative bacteria, including highly multiresistant strains such as methicillin-resistant Staphylococcus aureus. Antibacterial activity of silver nanoparticles was found to be dependent on the size of silver particles. A very low concentration of silver (as low as 1.69 mug/mL Ag) gave antibacterial performance.

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Year:  2006        PMID: 16913750     DOI: 10.1021/jp063826h

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  230 in total

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Journal:  Environ Sci Technol       Date:  2011-06-01       Impact factor: 9.028

2.  Decreasing bacterial colonization of external fixation pins through nitric oxide release coatings.

Authors:  Joshua Holt; Brian Hertzberg; Paul Weinhold; Wesley Storm; Mark Schoenfisch; Laurence Dahners
Journal:  J Orthop Trauma       Date:  2011-07       Impact factor: 2.512

3.  Nanoparticles functionalized with ampicillin destroy multiple-antibiotic-resistant isolates of Pseudomonas aeruginosa and Enterobacter aerogenes and methicillin-resistant Staphylococcus aureus.

Authors:  Ashley N Brown; Kathryn Smith; Tova A Samuels; Jiangrui Lu; Sherine O Obare; Maria E Scott
Journal:  Appl Environ Microbiol       Date:  2012-01-27       Impact factor: 4.792

4.  S-nitrosothiol tethered polymer hexagons: synthesis, characterisation and antibacterial effect.

Authors:  S Priya; R Nithya; Sheela Berchmans
Journal:  J Mater Sci Mater Med       Date:  2013-08-31       Impact factor: 3.896

5.  Bactericidal effect of zero-valent iron nanoparticles on Escherichia coli.

Authors:  Changha Lee; Jee Yeon Kim; Won Il Lee; Kara L Nelson; Jeyong Yoon; David L Sedlak
Journal:  Environ Sci Technol       Date:  2008-07-01       Impact factor: 9.028

6.  Studies on the biocompatibility and the interaction of silver nanoparticles with human mesenchymal stem cells (hMSCs).

Authors:  C Greulich; S Kittler; M Epple; G Muhr; M Köller
Journal:  Langenbecks Arch Surg       Date:  2009-03-12       Impact factor: 3.445

7.  Inactivation of Pure Bacterial Biofilms by Impaction of Aerosolized Consumer Products Containing Nanoparticulate Metals.

Authors:  Jennifer Therkorn; Leonardo Calderon; Benton Cartledge; Nirmala Thomas; Brian Majestic; Gediminas Mainelis
Journal:  Environ Sci Nano       Date:  2018-01-03

Review 8.  Silver nanoparticles as real topical bullets for wound healing.

Authors:  Thirumurugan Gunasekaran; Tadele Nigusse; Magharla Dasaratha Dhanaraju
Journal:  J Am Coll Clin Wound Spec       Date:  2012-06-04

9.  Designing nanogel carriers for antibacterial applications.

Authors:  M Carme Coll Ferrer; Sana Dastgheyb; Noreen J Hickok; David M Eckmann; Russell J Composto
Journal:  Acta Biomater       Date:  2014-01-13       Impact factor: 8.947

10.  Combined biocidal action of silver nanoparticles and ions against Chlorococcales (Scenedesmus quadricauda, Chlorella vulgaris) and filamentous algae (Klebsormidium sp.).

Authors:  Radek Zouzelka; Pavlina Cihakova; Jana Rihova Ambrozova; Jiri Rathousky
Journal:  Environ Sci Pollut Res Int       Date:  2016-03-07       Impact factor: 4.223

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