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Silver nanoparticles: correlating nanoparticle size and cellular uptake with genotoxicity.
- Source :
-
Mutagenesis [Mutagenesis] 2015 Jul; Vol. 30 (4), pp. 577-91. Date of Electronic Publication: 2015 May 11. - Publication Year :
- 2015
-
Abstract
- The focus of this research was to develop a better understanding of the pertinent physico-chemical properties of silver nanoparticles (AgNPs) that affect genotoxicity, specifically how cellular uptake influences a genotoxic cell response. The genotoxicity of AgNPs was assessed for three potential mechanisms: mutagenicity, clastogenicity and DNA strand-break-based DNA damage. Mutagenicity (reverse mutation assay) was assessed in five bacterial strains of Salmonella typhimurium and Echerichia coli, including TA102 that is sensitive to oxidative DNA damage. AgNPs of all sizes tested (10, 20, 50 and 100nm), along with silver nitrate (AgNO3), were negative for mutagenicity in bacteria. No AgNPs could be identified within the bacteria cells using transmission electron microscopy (TEM), indicating these bacteria lack the ability to actively uptake AgNPs 10nm or larger. Clastogenicity (flow cytometry-based micronucleus assay) and intermediate DNA damage (DNA strand breaks as measured in the Comet assay) were assessed in two mammalian white blood cell lines: Jurkat Clone E6-1 and THP-1. It was observed that micronucleus and Comet assay end points were inversely correlated with AgNP size, with smaller NPs inducing a more genotoxic response. TEM results indicated that AgNPs were confined within intracellular vesicles of mammalian cells and did not penetrate the nucleus. The genotoxicity test results and the effect of AgNO3 controls suggest that silver ions may be the primary, and perhaps only, cause of genotoxicity. Furthermore, since AgNO3 was not mutagenic in the gram-negative bacterial Ames strains tested, the lack of bacterial uptake of the AgNPs may not be the major reason for the lack of genotoxicity observed.<br /> (Published by Oxford University Press on behalf of the UK Environmental Mutagen Society 2015.)
- Subjects :
- Cell Survival drug effects
Cell Survival genetics
Cells, Cultured
Comet Assay
DNA Damage genetics
DNA Repair drug effects
Escherichia coli drug effects
Escherichia coli metabolism
Escherichia coli Infections drug therapy
Escherichia coli Infections genetics
Escherichia coli Infections microbiology
Humans
Jurkat Cells
Metal Nanoparticles chemistry
Micronucleus Tests methods
Microscopy, Electron, Transmission
Monocytes cytology
Monocytes drug effects
Monocytes metabolism
Mutagenicity Tests methods
Salmonella typhimurium drug effects
Salmonella typhimurium metabolism
Anti-Bacterial Agents pharmacology
DNA Damage drug effects
Escherichia coli genetics
Metal Nanoparticles administration & dosage
Mutagens pharmacology
Salmonella typhimurium genetics
Silver chemistry
Subjects
Details
- Language :
- English
- ISSN :
- 1464-3804
- Volume :
- 30
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- Mutagenesis
- Publication Type :
- Academic Journal
- Accession number :
- 25964273
- Full Text :
- https://doi.org/10.1093/mutage/gev020