Literature DB >> 23793975

Preparation of carboxylated Ag nanoparticles as a coating material for medical devices and control of antibacterial activity.

Tsutomu Furuzono1, Takashi Iwamoto, Yoshinao Azuma, Masahiro Okada, Yoshiki Sawa.   

Abstract

Carboxyl group-donated silver (Ag) nanoparticles for coating on medical devices were prepared by a two-phase reduction system in situ. AgNO3 was the Ag ion source, tetraoctylammonium bromide [N(C8H17)4Br] the phase-transfer agent, sodium tetrahydroborate (NaBH4) the reducing agent and 10-carboxy-1-decanthiol (C11H22O2S, CDT) the capping agent. The characterizations of the Ag nanoparticles were conducted by diffuse reflectance Fourier transform infrared (FT-IR) spectroscopy, thermogravimetric differential thermal analysis (TG/DTA) and transmission electron microscope. With CDT capped on Ag nanoparticles, we found that the band around 3,100 cm(-1) was attributed to COO-H stretching vibration, two adsorptions at 2,928 and 2,856 cm(-1) to C-H symmetric/anti-symmetric stretching vibration, and at 1,718 cm(-1) to C=O stretching vibration in the FT-IR spectra. The organic components of the carboxylated Ag nanoparticles were 5.8-25.9 wt%, determined by TG/DTA. The particle sizes of the carboxylated Ag nanoparticles were well controlled by the addition of the capping agent, CDT, into the reaction system. The antimicrobial activity of the Ag nanoparticles covered with different contents of CDT against E. coli was evaluated. Smaller-size Ag nanoparticles showed higher antibacterial activity, which depended on a surface area that attached easily to a microorganism cell membrane.

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Year:  2013        PMID: 23793975     DOI: 10.1007/s10047-013-0715-3

Source DB:  PubMed          Journal:  J Artif Organs        ISSN: 1434-7229            Impact factor:   1.731


  25 in total

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Journal:  Biomaterials       Date:  2009-04-26       Impact factor: 12.479

8.  Basic fibroblast growth factor adsorption and release properties of calcium phosphate.

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Journal:  J Biomed Mater Res       Date:  1998-09-05

9.  An in vitro assessment of the antibacterial properties and cytotoxicity of nanoparticulate silver bone cement.

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Review 10.  Oxidative mechanisms in the toxicity of metal ions.

Authors:  S J Stohs; D Bagchi
Journal:  Free Radic Biol Med       Date:  1995-02       Impact factor: 7.376

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Journal:  J Artif Organs       Date:  2014-02-26       Impact factor: 1.731

2.  Synthesis and characterization of silver nanoparticles from (bis)alkylamine silver carboxylate precursors.

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Journal:  R Soc Open Sci       Date:  2018-04-11       Impact factor: 2.963

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