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1.
Ecotoxicol Environ Saf ; 120: 35-40, 2015 Oct.
Article in English | MEDLINE | ID: mdl-26024812

ABSTRACT

The Champagne region (France) is characterized by various chemical environmental pressures which could interfere with the immune status of natural populations of European bullhead, Cottus sp. Some adult fish were caught by electrofishing in spring, summer and autumn to determined immune effect of urban (Muizon), intensive agricultural (Bouy; Prunay) or viticultural (Serzy; Prunay) influences. The major results demonstrated an increase of cellular mortality and a decrease of phagocytosis activity in the stations impacted by agri-viticultural chemicals. These immunomodulations followed the temporal variability due to different treatments (agricultural impacts on spring; viticultural effects on autumn). At the present time, not enough data was provided to confirm the impact of agri-viticultural chemicals on fish immune system without interaction with other environmental factors. For example, in summer, the immunomarkers seems to be not only correlated with water contamination but also with other environmental factors (pathogens, physical field degradation, nutrients, temperature …). Nevertheless, immune parameters give a global view of organism and ecosystem health explaining growing interest for these biomarkers in environmental risk assessment.


Subject(s)
Agriculture , Biomarkers , Ecosystem , Environmental Monitoring/methods , Fishes/immunology , Perciformes/immunology , Animals , Environment , France , Risk Assessment , Seasons , Water Pollution
2.
Chemosphere ; 87(7): 675-83, 2012 May.
Article in English | MEDLINE | ID: mdl-22265682

ABSTRACT

In freshwater ecosystems, a large number of chemical substances are able to disturb homeostasis of fish by modulating one or more physiological functions including the immune system. The aim of this study was to assess multi-biomarker responses including immunotoxicity induced by urban and agricultural pressure in European bullheads living in a small French river basin. For this purpose, a set of biochemical, immunological, physiological and histological parameters was measured in wild bullheads from five locations characterized by various environmental pressures. Moreover, to address effects of physiological status and contamination level variation on biomarker responses, fish were sampled during three periods (April, July and October). Results revealed a clear impact of environmental pressure on fish health and particularly on immunological status. An increase of EROD activity was recorded between upstream and downstream sites. Upstream sites were also characterized by neurotoxicological effects. Fish exhibited upstream/downstream variations of immunological status but strong differences were observed according to sampling season. Conversely, regarding biochemical and immunological effects, no significant response of physiological indexes was recorded related to environmental pressures. According to these results, the European bullhead appears as a valuable model fish species to assess adverse effects in wildlife due to urban and agricultural pressures.


Subject(s)
Environmental Monitoring/methods , Perciformes/metabolism , Water Pollutants, Chemical/toxicity , Agriculture , Animals , Biomarkers/metabolism , Cytochrome P-450 CYP1A1/metabolism , Female , France , Male , Perciformes/physiology , Risk Assessment , Rivers/chemistry , Seasons , Stress, Physiological , Water Pollutants, Chemical/analysis
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