Nitrite-induced enhancement of toxicity of phenanthrene in fish and its implications for coastal waters

Coastal areas are prone to varying degrees of anthropogenic chemical contamination. In many coastal environments experiencing reducing conditions in the water column, nitrite is produced as a result of denitrification. With a view to determining the effect of a natural stress such as the presence of...

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Published in:Estuarine, coastal and shelf science Vol. 56; no. 5; pp. 1107 - 1110
Main Authors: Shailaja, M.S, Rodrigues, A
Format: Journal Article
Language:English
Published: London Elsevier Ltd 01-04-2003
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Abstract Coastal areas are prone to varying degrees of anthropogenic chemical contamination. In many coastal environments experiencing reducing conditions in the water column, nitrite is produced as a result of denitrification. With a view to determining the effect of a natural stress such as the presence of nitrite in water on the xenobiotic metabolism in fish, the euryhaline cichlid Oreochromis mossambicus was exposed for up to 9 days to environmentally relevant concentrations of water-borne nitrite and phenanthrene, a polycyclic aromatic hydrocarbon. Analyses of different biomarkers in the treated fish indicated significant increase in the metabolism of phenanthrene as a result of exposure to nitrite. For example, the activity of the biotransformation enzyme measured as 7-ethoxyresorufin- O-deethylase activity was, in the presence of 1 μM nitrite, nearly twice that produced by phenanthrene alone. Similarly, biliary fixed fluorescence values reflecting phenanthrene and its metabolites were rendered 1.7 times higher when exposed simultaneously to nitrite. Contact with nitrite and phenanthrene together also led to severe hepatic damage with possible cell death as inferred from the large enhancement in sorbitol dehydrogenase activity in the serum and reduced liver somatic index.
AbstractList In some coastal areas receiving anthropogenic chemical contaminants, reducing conditions in the water cause intense denitrification and nitrite production that can create a shallow, suboxic zone. In one such area along the west coast of India, a species of tilapia (Oreochromis mossambicus) is exposed to non-lethal concentrations of phenanthrene and nitrite over much of the year. Stress responses of these fish to such conditions for up to 9 d were studied in the laboratory. Analysis of several biomarkers in treated fish showed a significant increase in phenanthrene metabolism due to nitrite exposure. For example, ethoxyresorufin-O-deethylase activity (a biotransformation enzyme) was nearly twice as high in the presence of 1 M nitrite as that produced by phenanthrene alone. A similar response was observed for biliary fixed fluorescence values. Exposure to nitrite and phenanthrene combined caused severe hepatic damage and cell death.
Coastal areas are prone to varying degrees of anthropogenic chemical contamination. In many coastal environments experiencing reducing conditions in the water column, nitrite is produced as a result of denitrification. With a view to determining the effect of a natural stress such as the presence of nitrite in water on the xenobiotic metabolism in fish, the euryhaline cichlid Oreochromis mossambicus was exposed for up to 9 days to environmentally relevant concentrations of water-borne nitrite and phenanthrene, a polycyclic aromatic hydrocarbon. Analyses of different biomarkers in the treated fish indicated significant increase in the metabolism of phenanthrene as a result of exposure to nitrite. For example, the activity of the biotransformation enzyme measured as 7-ethoxyresorufin-O-deethylase activity was, in the presence of 1 mu M nitrite, nearly twice that produced by phenanthrene alone. Similarly, biliary fixed fluorescence values reflecting phenanthrene and its metabolites were rendered 1.7 times higher when exposed simultaneously to nitrite. Contact with nitrite and phenanthrene together also led to severe hepatic damage with possible cell death as inferred from the large enhancement in sorbitol dehydrogenase activity in the serum and reduced liver somatic index.
Coastal areas are prone to varying degrees of anthropogenic chemical contamination. In many coastal environments experiencing reducing conditions in the water column, nitrite is produced as a result of denitrification. With a view to determining the effect of a natural stress such as the presence of nitrite in water on the xenobiotic metabolism in fish, the euryhaline cichlid Oreochromis mossambicus was exposed for up to 9 days to environmentally relevant concentrations of water-borne nitrite and phenanthrene, a polycyclic aromatic hydrocarbon. Analyses of different biomarkers in the treated fish indicated significant increase in the metabolism of phenanthrene as a result of exposure to nitrite. For example, the activity of the biotransformation enzyme measured as 7-ethoxyresorufin- O-deethylase activity was, in the presence of 1 μM nitrite, nearly twice that produced by phenanthrene alone. Similarly, biliary fixed fluorescence values reflecting phenanthrene and its metabolites were rendered 1.7 times higher when exposed simultaneously to nitrite. Contact with nitrite and phenanthrene together also led to severe hepatic damage with possible cell death as inferred from the large enhancement in sorbitol dehydrogenase activity in the serum and reduced liver somatic index.
Author Shailaja, M.S
Rodrigues, A
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Issue 5
Keywords marine pollution
damage
coastal waters
polycyclic aromatic hydrocarbons
fish liver
denitrification
Disease
Toxicity
Liver
Nitrites
Cichlidae
Biological marker
Environmental management
Coastal zone
Freshwater environment
Enzymatic activity
damage: denitrification
Pisces
Biotransformation
Phenanthrene
Oreochromis mossambicus
Digestive system
Exposure
Polycyclic aromatic compound
Vertebrata
Denitrification
Water pollution
Language English
License CC BY 4.0
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Snippet Coastal areas are prone to varying degrees of anthropogenic chemical contamination. In many coastal environments experiencing reducing conditions in the water...
In some coastal areas receiving anthropogenic chemical contaminants, reducing conditions in the water cause intense denitrification and nitrite production that...
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SubjectTerms Agnatha. Pisces
Animal, plant and microbial ecology
Applied ecology
Biological and medical sciences
coastal waters
damage
denitrification
Ecotoxicology, biological effects of pollution
Effects of pollution and side effects of pesticides on vertebrates
fish liver
Fundamental and applied biological sciences. Psychology
Marine
marine pollution
Oreochromis mossambicus
phenanthrene
polycyclic aromatic hydrocarbons
Title Nitrite-induced enhancement of toxicity of phenanthrene in fish and its implications for coastal waters
URI https://dx.doi.org/10.1016/S0272-7714(02)00311-6
https://search.proquest.com/docview/14666972
https://search.proquest.com/docview/19398932
Volume 56
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