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High impact information on Toxicogenetics


Associations of Toxicogenetics with chemical compounds

  • This report illustrate the power of toxicogenomics to evaluate the involvement of certain genes or proteins in response to uranium [6].


  1. Valproic acid teratogenicity: a toxicogenomics approach. Kultima, K., Nyström, A.M., Scholz, B., Gustafson, A.L., Dencker, L., Stigson, M. Environ. Health Perspect. (2004) [Pubmed]
  2. Toxicogenetics of niridazole in inbred mice. Blumer, J.L., Simpson, J.M., Lucas, S.V., Webster, L.T. J. Pharmacol. Exp. Ther. (1980) [Pubmed]
  3. A toxicogenomics approach to identify new plausible epigenetic mechanisms of ochratoxin a carcinogenicity in rat. Marin-Kuan, M., Nestler, S., Verguet, C., Bezençon, C., Piguet, D., Mansourian, R., Holzwarth, J., Grigorov, M., Delatour, T., Mantle, P., Cavin, C., Schilter, B. Toxicol. Sci. (2006) [Pubmed]
  4. Toxicogenomics of resveratrol in rat liver. Hebbar, V., Shen, G., Hu, R., Kim, B.R., Chen, C., Korytko, P.J., Crowell, J.A., Levine, B.S., Kong, A.N. Life Sci. (2005) [Pubmed]
  5. Transcriptional biomarkers distinguish between vulnerable periods for developmental neurotoxicity of chlorpyrifos: Implications for toxicogenomics. Dam, K., Seidler, F.J., Slotkin, T.A. Brain Res. Bull. (2003) [Pubmed]
  6. Transcriptomic and proteomic responses of human renal HEK293 cells to uranium toxicity. Prat, O., Berenguer, F., Malard, V., Tavan, E., Sage, N., Steinmetz, G., Quemeneur, E. Proteomics (2005) [Pubmed]
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