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The well-defined battery of in vitro systems applied within chemical cancer risk assessment is often characterised by a high false-positive rate, thus repeatedly failing to correctly predict the in vivo genotoxic and carcinogenic properties of test compounds. Toxicogenomics, i.e. mRNA-profiling, has...
ORGANISM(S): Mus musculus 
The lack of accurate in vitro assays for predicting in vivo toxicity of chemicals together with new legislations demanding replacement and reduction of animal testing has triggered the development of alternative methods. This study aimed at developing a transcriptomics-based in vitro prediction assa...
ORGANISM(S): Homo sapiens 
The well-defined battery of in vitro systems applied within chemical cancer risk assessment is often characterised by a high false-positive rate, thus repeatedly failing to correctly predict the in vivo genotoxic and carcinogenic properties of test compounds. Toxicogenomics, i.e. mRNA-profiling, has...
ORGANISM(S): Mus musculus 
Genotoxicity of nitrosamines
Given the positive results of quercetin in in vitro genotoxicity studies, it is of interest to test the in vivo genotoxicity of this important dietary flavonoid, especially considering possible high intake by widely available supplements. In the present study quercetin was tested in a transcriptomic...
ORGANISM(S): Mus musculus 
2015-10-01 | GSE63227 | GEO
Unlocking the power of transcriptomic biomarkers in qualitative and quantitative genotoxicity assessment of chemicals I
Unlocking the power of transcriptomic biomarkers in qualitative and quantitative genotoxicity assessment of chemicals II
Orientia tsutsugamushi modulates p53, the cell cycle, and genotoxicity to maintain its intracellular niche
Genomics
In vivo genotoxicity assesment of NDEA in mouse
Application of a New Approach Methodology (NAM)-based Strategy for Genotoxicity Assessment of Data-poor Compounds
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