Please use this identifier to cite or link to this item: https://biore.bio.bg.ac.rs/handle/123456789/6114
Title: Combined use of biomarkers to assess the impact of untreated wastewater from the Danube River, Serbia
Authors: Kostić-Vuković, Jovana
Kolarević, Stoimir
Sunjog, Karolina
Subotić, Srđan 
Višnjić-Jeftić, Željka
Rašković, Božidar
Poleksić, Vesna
Vuković-Gačić, Branka 
Lenhardt, Mirjana
Keywords: Metals accumulation;;Erythrocyte morphometry;;Comet assay;;Micronucleus;;Histopathology;;HepG2.
Issue Date: 16-May-2023
Rank: M22
Publisher: Springer
Journal: Ecotoxicology
Abstract: 
In this study a battery of bioassays, both in vivo (metals and metalloids concentrations, erythrocyte morphometry, comet assay, micronucleus assay, and histopathological analyses) on vimba bream Vimba vimba (L., 1758) and white bream Blicca bjoerkna (L., 1758), and in vitro (treatment of HepG2 cells with native water samples) was applied to assess the harmful potential of untreated wastewater. Faecal indicator bacteria were quantified to assess the microbiological water quality. Vimba bream had significantly higher Fe concentrations in both liver and muscle, while white bream had higher Ca and Cu concentrations in liver. Vimba bream had a significantly higher level of DNA damage in both liver and blood cells, in comparison to white bream. Low levels of micronucleus and nuclear abnormalities were observed in both species. Erythrocytes morphometry did not show significant interspecific differences. Histopathological analyses revealed a similar response of the studied species, with a significantly higher presence of ceroid pigments in the liver of vimba bream. Treatment of HepG2 cells revealed the high genotoxic potential of water downstream of the discharge point. The results of this study clearly demonstrate the importance of effect-based monitoring, in order to enforce more efficient management of natural resources and implementation of wastewater treatment systems.
URI: https://biore.bio.bg.ac.rs/handle/123456789/6114
DOI: 10.1007/s10646-023-02663-6
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