6533b86ffe1ef96bd12ce78e
RESEARCH PRODUCT
Sub-lethal doses of polybrominated diphenyl ethers affect some biomarkers involved in energy balance and cell cycle, via oxidative stress in the marine fish cell line SAF-1
Concetta Maria MessinaSimona ManuguerraMaría ÁNgeles EstebanAndrea SantulliCristobal Espinosa RuizAlberto Cuestasubject
Cell signalingHealth Toxicology and MutagenesisCellPBDEs010501 environmental sciencesCell cyclePBDEAquatic Sciencemedicine.disease_cause01 natural sciencesCell Line03 medical and health sciencesPolybrominated diphenyl ethersSettore AGR/20 - ZoocoltureHalogenated Diphenyl EthersmedicineAnimalsoxidative stressSparus aurata fibroblastSettore BIO/06 - Anatomia Comparata E Citologia030304 developmental biology0105 earth and related environmental scienceschemistry.chemical_classificationEnergetic balance0303 health sciencesReactive oxygen speciesDose-Response Relationship Drugenergetic balance:5 - Ciencias puras y naturales::57 - Biología [CDU]FibroblastsCell cycleSea BreamCell biologyOxidative Stressmedicine.anatomical_structurechemistryCell cultureOxidative strecell cycleEnergy MetabolismReactive Oxygen SpeciesBiomarkersWater Pollutants ChemicalIntracellularOxidative stressdescription
Abstract Polybrominated diphenyl ethers (PBDEs) are a class of persistent contaminants which are found all over the world in the marine environment. Sparus aurata fibroblast cell line (SAF-1) was exposed to increasing concentrations of PBDEs 47 and 99, until 72 h to evaluate the cytotoxicity, reactive oxygen species (ROS) production and the expression of some selected molecular markers related to cell cycle, cell signaling, energetic balance and oxidative stress (p53, erk-1, hif-1α and nrf-2), by real-time PCR. Furthermore, SAF-1 cells were exposed for 7 and 15 days to sub-lethal concentrations, in order to evaluate the response of some biomarkers by immunoblotting (p53, ERK-1, AMPK, HIF-1α and NRF-2). After 48 and 72 h, the cells showed a significant decrease of cell vitality as well as an increase of intracellular ROS production. Gene expression analysis showed that sub-lethal concentrations of BDE-99 and 47, after 72 h, up-regulated cell cycle and oxidative stress biomarkers, although exposure to 100 μmol L−1 down-regulated the selected markers related to cell cycle, cell signaling, energetic balance. After 7 and 15 days of sub-lethal doses exposure, all the analyzed markers resulted affected by the contaminants. Our results suggest that PBDEs influence the cells homeostasis first of all via oxidative stress, reducing the cell response and defense capacity and affecting its energetic levels. This situation of stress and energy imbalance could represents a condition that, modifying some of the analyzed biochemical pathways, would predispose to cellular transformation.
year | journal | country | edition | language |
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2019-01-01 |