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Gen Comp Endocrinol ; 205: 185-96, 2014 Sep 01.
Article in English | MEDLINE | ID: mdl-24975542

ABSTRACT

A wide range of endocrine disrupter chemicals can mimic steroid hormones causing adverse health effects. Nonylphenol (NP) and t-octhylphenol (t-OP) are man-made alkylphenolic environmental contaminants possessing controversial endocrine disruption properties. This study has investigated the effects of NP and t-OP enriched diets on hepatic tissue and biotransformation activities in the liver. To this aim, sea bream juveniles were fed with commercial diet enriched with three different doses of NP (NP1: 5mg/kg bw, NP2: 50mg/kg bw and NP3: 100mg/kg bw) or t-OP (t-OP1: 5mg/kg bw, t-OP2: 50mg/kg bw and t-OP3: 100mg/kg bw) for 21 days. A significant increase of the hepatosomatic index was observed in NP1 and t-OP1. Alteration of liver morphology was observed in both NP and t-OP exposed juveniles although the most altered endpoints were observed in t-OP2 with 100% of tissue degeneration. Ethoxyresorufin-O-deethylase activity was significantly inhibited by NP and t-OP (p<0.05), while catalase activity was significantly induced, at both doses. A different pattern of protein expression of different isoforms of both vitellogenin and zona radiata protein was evidenced within the treatments. In addition, a significant increase in the abundance of the stress induced heat shock protein 70 gene in the liver of t-OP2 fish and a significant increase in the abundance of the estrogen induced cathepsin D gene in the liver of NP1 and t-OP2 fish, were observed. Finally, estradiol-17ß (E2) and testosterone (T) plasma levels and E2/T showed significantly different patterns in NP and t-OP exposed against control fish.


Subject(s)
Diet , Food Contamination , Liver/metabolism , Phenol/toxicity , Sea Bream/growth & development , Sea Bream/metabolism , Animals , Biomarkers/metabolism , Body Weight/drug effects , Egg Proteins/metabolism , Gonadal Steroid Hormones/blood , Lipid Metabolism/drug effects , Liver/drug effects , Liver/enzymology , Liver/pathology , Organ Size/drug effects , Phenols/toxicity , Real-Time Polymerase Chain Reaction , Sea Bream/blood , Vitellogenins/blood , Vitellogenins/genetics
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