Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5851105 | Food and Chemical Toxicology | 2013 | 10 Pages |
Abstract
Combined treatment of SeCys and MeHg protected HepG2 cells against MeHg-induced cell damage, showing this selenocompound a more relevant effect than those of selenium methylselenocysteine and selenium methionine. Co-treatment with SeCys exerted a protective effect against MeHg by restraining ROS generation and glutathione decrease, and through the modulation of antioxidant enzymes activities. In addition, SeCys delayed MeHg-induced apoptosis and prevented extracellular regulated kinases (ERKs) deactivation, as well as p38 and c-Jun N-terminal kinase (JNK) stimulations in comparison to MeHg-treated cells. ERK, JNK and p38 involvement on the protective effect of SeCys against MeHg-induced cell damage was confirmed by using selective inhibitors. All these results indicate that SeCys protects against MeHg-induced cell damage by modulating the redox status and key proteins related to cell stress and survival/proliferation pathways.
Keywords
SeCysERKJnkdithiotreitolFBSGPXGSHDTTMeHgCAT5-bromo-2′-deoxyuridinec-Jun N-terminal kinaseMAPKROSBrdUSeMetfetal bovine serumSelenomethionineselenocystineHepG2 cellslactate dehydrogenaseLDHMethylmercuryCell deathCatalaseextracellular regulated kinasemitogen-activated protein kinasesGlutathioneglutathione reductaseglutathione peroxidaseReactive oxygen species
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Authors
Isabel Cordero-Herrera, Susana Cuello, Luis Goya, Yolanda Madrid, Laura Bravo, Carmen Cámara, Sonia Ramos,