Literature DB >> 27441588

Size- and coating-dependent cytotoxicity and genotoxicity of silver nanoparticles evaluated using in vitro standard assays.

Xiaoqing Guo1, Yan Li1, Jian Yan1, Taylor Ingle2, Margie Yvonne Jones2, Nan Mei1, Mary D Boudreau3, Candice K Cunningham2, Mazhar Abbas1,4, Angel M Paredes2, Tong Zhou5, Martha M Moore1, Paul C Howard2, Tao Chen1.   

Abstract

The physicochemical characteristics of silver nanoparticles (AgNPs) may greatly alter their toxicological potential. To explore the effects of size and coating on the cytotoxicity and genotoxicity of AgNPs, six different types of AgNPs, having three different sizes and two different coatings, were investigated using the Ames test, mouse lymphoma assay (MLA) and in vitro micronucleus assay. The genotoxicities of silver acetate and silver nitrate were evaluated to compare the genotoxicity of nanosilver to that of ionic silver. The Ames test produced inconclusive results for all types of the silver materials due to the high toxicity of silver to the test bacteria and the lack of entry of the nanoparticles into the cells. Treatment of L5718Y cells with AgNPs and ionic silver resulted in concentration-dependent cytotoxicity, mutagenicity in the Tk gene and the induction of micronuclei from exposure to nearly every type of the silver materials. Treatment of TK6 cells with these silver materials also resulted in concentration-dependent cytotoxicity and significantly increased micronucleus frequency. With both the MLA and micronucleus assays, the smaller the AgNPs, the greater the cytotoxicity and genotoxicity. The coatings had less effect on the relative genotoxicity of AgNPs than the particle size. Loss of heterozygosity analysis of the induced Tk mutants indicated that the types of mutations induced by AgNPs were different from those of ionic silver. These results suggest that AgNPs induce cytotoxicity and genotoxicity in a size- and coating-dependent manner. Furthermore, while the MLA and in vitro micronucleus assay (in both types of cells) are useful to quantitatively measure the genotoxic potencies of AgNPs, the Ames test cannot.

Entities:  

Keywords:  Ames test; genotoxicity; in vitro micronucleus assay; mouse lymphoma assay; silver nanoparticles

Mesh:

Substances:

Year:  2016        PMID: 27441588     DOI: 10.1080/17435390.2016.1214764

Source DB:  PubMed          Journal:  Nanotoxicology        ISSN: 1743-5390            Impact factor:   5.913


  19 in total

1.  Particle coatings but not silver ions mediate genotoxicity of ingested silver nanoparticles in a mouse model.

Authors:  Sameera Nallanthighal; Cadia Chan; Dhruba J Bharali; Shaker A Mousa; Elizabeth Vásquez; Ramune Reliene
Journal:  NanoImpact       Date:  2017-01-26

2.  Differential effects of silver nanoparticles on DNA damage and DNA repair gene expression in Ogg1-deficient and wild type mice.

Authors:  Sameera Nallanthighal; Cadia Chan; Thomas M Murray; Aaron P Mosier; Nathaniel C Cady; Ramune Reliene
Journal:  Nanotoxicology       Date:  2017-10-19       Impact factor: 5.913

Review 3.  Vapor-Deposited Biointerfaces and Bacteria: An Evolving Conversation.

Authors:  Trevor B Donadt; Rong Yang
Journal:  ACS Biomater Sci Eng       Date:  2019-12-15

4.  Hazard Assessment of Benchmark Metal-Based Nanomaterials Through a Set of In Vitro Genotoxicity Assays.

Authors:  Maria Dušinská; Maria João Silva; Nádia Vital; Mariana Pinhão; Naouale El Yamani; Elise Rundén-Pran; Henriqueta Louro
Journal:  Adv Exp Med Biol       Date:  2022       Impact factor: 3.650

5.  Effects of Particle Size and Surface Charge on Mutagenicity and Chicken Embryonic Toxicity of New Silver Nanoclusters.

Authors:  Xinwen Zhang; Jinglin Zhang; Qin Wang; Shweta Ghimire; Lei Mei; Changqing Wu
Journal:  ACS Omega       Date:  2022-05-18

6.  Surface coatings alter transcriptional responses to silver nanoparticles following oral exposure.

Authors:  Sameera Nallanthighal; Lukas Tierney; Nathaniel C Cady; Thomas M Murray; Sridar V Chittur; Ramune Reliene
Journal:  NanoImpact       Date:  2019-12-24

7.  Development and Application of TK6-derived Cells Expressing Human Cytochrome P450s for Genotoxicity Testing.

Authors:  Xilin Li; Si Chen; Xiaoqing Guo; Qiangen Wu; Ji-Eun Seo; Lei Guo; Mugimane G Manjanatha; Tong Zhou; Kristine L Witt; Nan Mei
Journal:  Toxicol Sci       Date:  2020-06-01       Impact factor: 4.849

Review 8.  Silver nanoparticles: Synthesis, medical applications and biosafety.

Authors:  Li Xu; Yi-Yi Wang; Jie Huang; Chun-Yuan Chen; Zhen-Xing Wang; Hui Xie
Journal:  Theranostics       Date:  2020-07-11       Impact factor: 11.556

9.  RNA-sequencing reveals long-term effects of silver nanoparticles on human lung cells.

Authors:  Anda R Gliga; Sebastiano Di Bucchianico; Jessica Lindvall; Bengt Fadeel; Hanna L Karlsson
Journal:  Sci Rep       Date:  2018-04-27       Impact factor: 4.379

10.  Hemolysis of Human Erythrocytes by Argovit™ AgNPs from Healthy and Diabetic Donors: An In Vitro Study.

Authors:  Roberto Luna-Vázquez-Gómez; María Evarista Arellano-García; Juan Carlos García-Ramos; Patricia Radilla-Chávez; David Sergio Salas-Vargas; Francisco Casillas-Figueroa; Balam Ruiz-Ruiz; Nina Bogdanchikova; Alexey Pestryakov
Journal:  Materials (Basel)       Date:  2021-05-24       Impact factor: 3.623

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