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Evaluation of collision/reaction gases in single-particle ICP-MS for sizing selenium nanoparticles and assessment of their antibacterial activity.

Authors :
Freire BM
Cavalcanti YT
Lange CN
Pieretti JC
Pereira RM
Gonçalves MC
Nakazato G
Seabra AB
Batista BL
Source :
Nanotechnology [Nanotechnology] 2022 Jun 09; Vol. 33 (35). Date of Electronic Publication: 2022 Jun 09.
Publication Year :
2022

Abstract

Selenium nanoparticles (SeNPs) have recently attracted attention because they combine the benefits of Se and lower toxicity compared to other chemical forms of this element. In this study, SeNPs were synthesized by a green method using ascorbic acid as the reducing agent and polyvinyl alcohol as stabilizer. The nanoparticles were widely characterized. To determine the total concentration of Se by ICP-MS, several isotopes and the use of He as collision gas were evaluated, which was effective in minimizing interferences. A method for sizing SeNPs by single particle ICP-MS (SP-ICP-MS) was developed. For this purpose, He and H <subscript>2</subscript> were evaluated as collision/reaction gases, and the second one showed promising results, providing an average diameter of 48 nm for the SeNPs. These results agree with those obtained by TEM (50.1 nm). Therefore, the SP-ICP-MS can be implemented for characterizing SeNPs in terms of size and size distribution, being an important analytical tool for Se and other widely studied nanoparticles (e.g. Ag, Au, Ce, Cu, Fe, Zn). Finally, the antibacterial activity of SeNPs was assessed. The SeNPs showed bacteriostatic activity against three strains of Gram-positive bacteria and were particularly efficient in inhibiting the growth E. faecalis even at very low concentrations (MIC < 1.4 mg l <superscript>-1</superscript> ). In addition, a bactericidal activity of SeNPs against S. aureus was observed. These nanoparticles may have potential application in pharmaceutical industry, biomedicine and agriculture.<br /> (© 2022 IOP Publishing Ltd.)

Details

Language :
English
ISSN :
1361-6528
Volume :
33
Issue :
35
Database :
MEDLINE
Journal :
Nanotechnology
Publication Type :
Academic Journal
Accession number :
35605588
Full Text :
https://doi.org/10.1088/1361-6528/ac723e