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  • Organophosphate pesticides ...
    Medina-Díaz, I.M.; Rubio-Ortíz, M.; Martínez-Guzmán, M.C.; Dávalos-Ibarra, R.L.; Rojas- García, A.E.; Robledo-Marenco, M.L.; Barrón-Vivanco, B.S.; Girón-Pérez, M.I.; Elizondo, G.

    Toxicology in vitro, December 2011, 2011-Dec, 2011-12-00, 20111201, Letnik: 25, Številka: 8
    Journal Article

    ► Glutathione S-transferase involved in pesticides detoxification. ► GSTA1 is the predominant isoform of GST expressed in the human liver. ► Methyl parathion and chlorpyrifos increases the level of GSTA1. ► HepG2 cell cultures could be a useful model for studying the function of GSTA1. Chlorpyrifos and methyl parathion are among the most widely used insecticides in the world. Human populations are constantly exposed to low doses of both due to their extensive use and presence in food and drinking water. Glutathione S-transferase (GST) catalyzes the conjugation of glutathione on electrophilic substrates and is an important line of defense in the protection of cellular components from reactive species. GST alpha1 (GSTA1) is the predominant isoform of GST expressed in the human liver; thus, determining the effect of insecticides on GSTA1 transcription is very important. In the present study, we analyzed the effects of methyl parathion and chlorpyrifos on GSTA1 gene expression in HepG2 cells using real time PCR, and activity and immunoreactive protein assays. The results demonstrated that exposure to methyl parathion and chlorpyrifos increased the level of GSTA1 mRNA, GSTA1 immunoreactive protein and GST activity relative to a control. These results demonstrated that these insecticides can increase the expression of GSTA1. In conclusion, HepG2 cell cultures treated with methyl parathion and chlorpyrifos could be a useful model for studying the function of GSTA1 and its role in the metabolism of xenobiotics in the liver.