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Updated: Jul 22, 2025

Advanced 3D Liver Models for In vitro Genotoxicity Testing Following Long-Term Nanomaterial Exposure
Published on: June 5, 2020
Genotoxicity assessment of eight nitrosamines using 2D and 3D HepaRG cell models
Ji-Eun Seo1, Joshua Z Yu1,2, Hannah Xu1
1Division of Genetic and Molecular Toxicology, National Center for Toxicological Research, U.S. Food and Drug Administration, Jefferson, AR, 72079, USA.
Abstract:
N-nitrosamine impurities have been increasingly detected in human drugs. This is a safety concern as many nitrosamines are mutagenic in bacteria and carcinogenic in rodent models. Typically, the mutagenic and carcinogenic activity of nitrosamines requires metabolic activation by cytochromes P450 enzymes (CYPs), which in many in vitro models are supplied exogenously using rodent liver homogenates. There are only limited data on the genotoxicity of nitrosamines in human cell systems. In this study, we used metabolically competent human HepaRG cells, whose metabolic capability is comparable to that of primary human hepatocytes, to evaluate the genotoxicity of eight nitrosamines [N-cyclopentyl-4-nitrosopiperazine (CPNP), N-nitrosodibutylamine (NDBA), N-nitrosodiethylamine (NDEA), N-nitrosodimethylamine (NDMA), N-nitrosodiisopropylamine (NDIPA), N-nitrosoethylisopropylamine (NEIPA), N-nitroso-N-methyl-4-aminobutyric acid (NMBA), and N-nitrosomethylphenylamine (NMPA)]. Under the conditions we used to culture HepaRG cells, three-dimensional (3D) spheroids possessed higher levels of CYP activity compared to 2D monolayer cells; thus the genotoxicity of the eight nitrosamines was investigated using 3D HepaRG spheroids in addition to more conventional 2D cultures. Genotoxicity was assessed as DNA damage using the high-throughput CometChip assay and as aneugenicity/clastogenicity in the flow-cytometry-based micronucleus (MN) assay. Following a 24-h treatment, all the nitrosamines induced DNA damage in 3D spheroids, while only three nitrosamines, NDBA, NDEA, and NDMA, produced positive responses in 2D HepaRG cells. In addition, these three nitrosamines also caused significant increases in MN frequency in both 2D and 3D HepaRG models, while NMBA and NMPA were positive only in the 3D HepaRG MN assay. Overall, our results indicate that HepaRG spheroids may provide a sensitive, human-based cell system for evaluating the genotoxicity of nitrosamines.
Insights
Human HepaRG spheroids effectively detect genotoxicity of N-nitrosamine impurities in drugs. This human cell model shows higher sensitivity than 2D cultures for evaluating these mutagenic compounds.
Area of Science:
- Toxicology
- Genetics
- Drug Safety
Background:
- N-nitrosamine impurities are increasingly found in human drugs, posing a safety risk due to their mutagenic and carcinogenic potential.
- Metabolic activation by cytochromes P450 enzymes (CYPs) is typically required for nitrosamine toxicity, often studied using exogenous rodent liver homogenates.
- Limited data exist on nitrosamine genotoxicity specifically within human cell systems.
Purpose of the Study:
- To evaluate the genotoxicity of eight nitrosamines using metabolically competent human HepaRG cells.
- To compare the sensitivity of 2D monolayer and 3D spheroid HepaRG cell cultures for assessing nitrosamine genotoxicity.
- To investigate DNA damage and aneugenicity/clastogenicity induced by nitrosamines in human cells.
Main Methods:
- Utilized human HepaRG cells cultured as both 2D monolayers and 3D spheroids.
- Assessed genotoxicity via the CometChip assay for DNA damage and the micronucleus (MN) assay for aneugenicity/clastogenicity.
- Treated cells with eight different nitrosamines: CPNP, NDBA, NDEA, NDMA, NDIPA, NEIPA, NMBA, and NMPA.
Main Results:
- All eight nitrosamines induced DNA damage in 3D HepaRG spheroids after 24-h treatment.
- Only NDBA, NDEA, and NDMA showed positive responses for DNA damage in 2D HepaRG cells.
- NDBA, NDEA, and NDMA increased MN frequency in both 2D and 3D models; NMBA and NMPA were positive only in the 3D MN assay.
Conclusions:
- Human HepaRG spheroids demonstrate higher sensitivity in detecting nitrosamine-induced genotoxicity compared to 2D cultures.
- 3D HepaRG spheroids represent a promising human-based cell system for robust genotoxicity testing of N-nitrosamines.
- This approach enhances the evaluation of drug safety concerning N-nitrosamine impurities.
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