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Analysis of the interaction of polycyclic aromatic compounds in a model organism: integration of genotoxic and histopathological effects

dc.contributor.advisorCosta, Maria Helena
dc.contributor.advisorCosta, Pedro Manuel Broa
dc.contributor.authorPereira, Sofia Alexandra Camacho
dc.date.accessioned2014-12-10T17:15:21Z
dc.date.available2014-12-10T17:15:21Z
dc.date.issued2014-11
dc.date.submitted2014-12
dc.description.abstractDue to their toxicity, especially their carcinogenic potential, polycyclic aromatic hydrocarbons (PAHs) became priority pollutants in biomonitoring programmes and environmental policy, such as the European Water Framework Directive. The model substances tested in this study, namely benzo[b]fluoranthene (B[b]F), considered potentially carcinogenic to humans and an effector carcinogenic PAH to wildlife, and phenanthrene (Phe), deemed a non-carcinogenic PAH, are common PAHs in coastal waters, owning distinct properties reflected in different, albeit overlapping, mechanisms of toxicity. Still, as for similar PAHs, their interaction effects remain largely unknown. In order to study the genotoxic effects of caused by the interaction of carcinogenic and non-carcinogenic PAHs, and their relation to histopathological alterations, juvenile sea basses, Dicentrarchus labrax, a highly ecologically- and economically-relevant marine fish, were injected with different doses (5 and 10 μg.g-1 fish ww) of the two PAHs, isolated or in mixture, and incubated for 48 h. Individuals injected with B[b]F and the PAH mixture exhibited higher clastogenic/aneugenic effects and DNA strand breakage in blood cells, determined through the erythrocytic nuclear abnormalities (ENA) and Comet assays, respectively. Also, hepatic histopathological alterations were found in all animals, especially those injected with B[b]F and the PAH mixture, relating especially to inflammation. Still, Phe also exhibited genotoxic effects in sea bass, especially in higher doses, revealing a very significant acute effect that was accordant with the Microtox test performed undergone in parallel. Overall, sea bass was sensitive to B[b]F (a higher molecular weight PAH), likely due to efficient bioactivation of the pollutant (yielding genotoxic metabolites and reactive oxygen species), when compared to Phe, the latter revealing a more significant acute effect. The results indicate no significant additive effect between the substances, under the current experimental conditions. The present study highlights the importance of understanding PAH interactions in aquatic organisms, since they are usually present in the aquatic environment in complex mixtures.por
dc.identifier.urihttp://hdl.handle.net/10362/13867
dc.language.isoengpor
dc.subjectPAH toxicitypor
dc.subjectBenzo[b]fluoranthenepor
dc.subjectPhenanthrenepor
dc.subjectCarcinogenic and non-carcinogenic PAHspor
dc.subjectHistologypor
dc.subjectDNA strand breakagepor
dc.titleAnalysis of the interaction of polycyclic aromatic compounds in a model organism: integration of genotoxic and histopathological effectspor
dc.typemaster thesis
dspace.entity.typePublication
rcaap.rightsopenAccesspor
rcaap.typemasterThesispor
thesis.degree.disciplineEngenharia do Ambiente. Perfil de Engenharia de Sistemas Ambientaispor
thesis.degree.levelGrau de Mestrepor
thesis.degree.nameDissertaçãopor

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