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  4. Hepato(Geno) Toxicity Assessment of Nanoparticles in a HepG2 Liver Spheroid Model
 
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2020
Journal Article
Title

Hepato(Geno) Toxicity Assessment of Nanoparticles in a HepG2 Liver Spheroid Model

Abstract
In compliance with the 3Rs policy to reduce, refine and replace animal experiments, the development of advanced in vitro models is needed for nanotoxicity assessment. Cells cultivated in 3D resemble organ structures better than 2D cultures. This study aims to compare cytotoxic and genotoxic responses induced by titanium dioxide (TiO2), silver (Ag) and zinc oxide (ZnO) nanoparticles (NPs) in 2D monolayer and 3D spheroid cultures of HepG2 human liver cells. (2) NPs were characterized by electron microscopy, dynamic light scattering, laser Doppler anemometry, UV-vis spectroscopy and mass spectrometry. Cytotoxicity was investigated by the alamarBlue assay and confocal microscopy in HepG2 monolayer and spheroid cultures after 24 h of NP exposure. DNA damage (strand breaks and oxidized base lesions) was measured by the comet assay. (3) Ag-NPs were aggregated at 24 h, and a substantial part of the ZnO-NPs was dissolved in culture medium. Ag-NPs induced stronger cytotoxicity in 2D cultures (EC50 3.8 µg/cm2) than in 3D cultures (EC50 > 30 µg/cm2), and ZnO-NPs induced cytotoxicity to a similar extent in both models (EC50 10.1-16.2 µg/cm2). Ag- and ZnO-NPs showed a concentration-dependent genotoxic effect, but the effect was not statistically significant. TiO2-NPs showed no toxicity (EC50 > 75 µg/cm2). (4) This study shows that the HepG2 spheroid model is a promising advanced in vitro model for toxicity assessment of NPs.
Author(s)
Elje, Elisabeth
Health Effects Lab
Mariussen, Espen
Health Effects Lab
Moriones, Oscar H.
Universitat Autonoma de Barcelona
Bastus, Neus G.
Institut Catala de Nanociencia
Puntes, Victor
Institut Catala de Nanociencia
Kohl, Yvonne  orcid-logo
Fraunhofer-Institut für Biomedizinische Technik IBMT  
Dusinska, Maria
Health Effects Lab
Runden-Pran, Elise
Health Effects Lab
Journal
Nanomaterials  
Open Access
File(s)
Download (2.18 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.24406/publica-r-262757
10.3390/nano10030545
Language
English
Fraunhofer-Institut für Biomedizinische Technik IBMT  
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