Article ID Journal Published Year Pages File Type
5559783 Environmental Toxicology and Pharmacology 2017 9 Pages PDF
Abstract

•Ibuprofen decrease arachidonate cyclooxygenase in zebra mussesl.•Ibuprofen leads to increased lipid turnover and oxidative stress.•Following exposure to air, mussels treated to ibuprofen lost more mass.

Municipal effluents are major source of pharmaceutical products in the environment. The purpose of this study was to examine the toxicity of a largely used drug, ibuprofen (Ibu), in Dresseina polymorpha mussels and its impact on air survival time. The mussels were exposed to increasing concentration of Ibu (0, 1, 10 and 100 μg/L) for 96 at 15 °C and a sub-group of mussels was maintain in air for another 96 h. Post-exposure mussels (Ibu and Ibu + Air) were analyzed for weight loss, total triglycerides, neutral lipids, lipid peroxidation (LPO), arachidonate-dependent cyclooxygenase (COX) and glutathione S-transferase activity. Lipid extracts of mussel tissues were also analyzed by 1H-nuclear resonance spectroscopy. The data revealed that mussels exposed to Ibu had increased signs of lipid oxidation, neutral lipids and decreased triglycerides, LPO and GST activity. COX activity was significantly reduced by Ibu in keeping with mode of action of the drug. Following exposure to air, increased weight loss, neutral lipids (lipid degradation), were observed in mussels exposed to Ibu but no changes in COX activity were observed. Air stress limited the decrease in triglycerides and the increase in GST in mussels exposed to 100 μg/L Ibu indicating decreased anti-oxidant response/phase II biotransformation and limited lipid metabolism. In conclusion, exposure to Ibu has some anti-inflammatory effects to mussels based on COX activity but resulted in increased oxidative damage and lipid catabolism. Exposure to air stress could enhance some of these responses and contribute to decreased resistance to air exposures.

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Life Sciences Environmental Science Health, Toxicology and Mutagenesis
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