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Heavy metals in the fishery products of low Lazio and the use of metallothionein as a biomarker of contamination

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Abstract

This study aims to investigate the use of metallothionein as a biomarker and its environmental impact on aquatic systems. According to the species’ characteristics, the interactions of toxic elements with living organisms in marine water can lead to biomagnifications in the trophic chain or bioconcentration of what is in the water. In many aquatic organisms, the presence of metallothionein proteins was studied. The chemical analysis of these bioindicators establishes, therefore, a sensitive method for the measurement of bioavailability which, over the years, allows for the quantification of the current pollution agents in the environment. Two study areas were selected along the Latium coasts. They are differentiated by their economic activities and their kind and level of environmental impact (mainly on marine pollution). These areas were selected in order to differentiate the maximum degree of both economic development and environmental quality. In particular, the presence of pollutants in the sea due to land activities was evaluated to compare the quality of the fishing products obtained from locations subject to various environmental impacts. The heavy metal concentrations were evaluated in water samples taken from different 30 sections of the fishes in order to understand the metabolism and origin of these contaminants. The primary metals studied were: mercury (Hg), zinc (Zn), nickel (Ni), lead (Pb), cadmium (Cd), and copper (Cu). All data produced were analyzed via multivariate analyses in order to provide a final and reliable indicator.

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References

  • APATIRSA–CNR 29/2003. Manuali e Linee Guida. Metodi analitici per le acque, Vol. terzo.

  • Bartsch, R., Klein, D., & Summer, K. H. (1990). Quantization of Cu-containing metallothionein by a Cd-saturation method. Analytical Biochemistry, 189, 35–39. doi:10.1016/0003-2697(90)90040-G.

    Article  Google Scholar 

  • Canli, M., & Atli, G. (2003). The relationship between heavy metal (Cd, Cr, Cu, Fe, Pb, Zn) levels and the size of six Mediterranean fish species. Environmental Pollution, 121(1), 129–136. doi:10.1016/S0269-7491(02)00194-X.

    Article  CAS  Google Scholar 

  • Clearwater, S. J., Farag, A. M., & Meyer, J. S. (2002). Bioavailability and toxicity of dietborne copper and zinc to fish. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 132(3), 269–313.

    Article  Google Scholar 

  • Cobbett, C., & Goldsbrough, P. (2002). Phytochelatins and metallothioneins: Roles in heavy metal detoxification and homeostasis. Annual Review of Plant Biology, 53, 159–182. doi:10.1146/annurev.arplant.53.100301.135154

    Article  CAS  Google Scholar 

  • Grumiaux, F., Bulet, P., Salzet, M., Demuynck, S., & Dhainaut-Courtois, N. (1998). Isolation and structural characterization of hepatic metallothionein from the roach (Rutilus rutilus L.). Fish Physiology and Biochemistry, 19, 279–286.

    Article  CAS  Google Scholar 

  • Hogstrand, C., & Haux, C. (1991). Binding and detoxification of heavy metals in lower vertebrates with reference to metallothionein. Comparative Biochemistry and Physiology C, 100, 137–141.

    Article  CAS  Google Scholar 

  • Journal of the European Communities L 77/1 (2001). Commission Regulation (EC) No 466/2001 of 8 March 2001 setting maximum levels for certain contaminants in foodstuff.

  • Journal of the European Union L 364/5 (2006). Commission Regulation (EC) No 1881/2006 of 19 December 2006 setting the maximum levels for certain contaminants in foodstuff.

  • Kaim, W., & Schwederski, B. (1991). Bioinorganic chemistry: Inorganic elements in the chemistry of life (Vol. 17, pp. 330–348). Stuttgart: Wiley.

    Google Scholar 

  • Klein, D., Bartsch, R., & Summer, K. H. (1990). Quantitation of Cu-containing metallothionein by a Cd-saturation method. Analytical Biochemistry, 189, 35–39.

    Article  CAS  Google Scholar 

  • Linde, A. R., Sanchez-Galan, S., Valles-Mota, P., & Garcia-Vazquez, E. (2001). Metallothionein as bioindicator of freshwater metal pollution: European eel and brown trout. Ecotoxicology and Environmental Safety, 49(1), 60–63.

    Article  CAS  Google Scholar 

  • Overnell, J., & Abdullah, M. I. (1988). Metallothionein and metal levels in flounder Platichthys flesus from four field sites and in flounder dosed with water-borne copper. Marine Ecology. Progress Series, 46(n.1–3), 71–74.

    Article  CAS  Google Scholar 

  • Roch, M., McCarter, J. A., Matheson, A. T., Clark, M. J. R., & Olafson, R. W. (1982). Hepatic metallothionein in rainbow trout (Salmo gairdneri) as an indicator of metal pollution in the Campbell River System. Canadian Journal of Fisheries and Aquatic Sciences, 39(12), 1596–1601.

    Article  CAS  Google Scholar 

  • Romeo, M., Siau, Y., Sidoumou, Z., & Gnassia-Barelli, M. (1999). Heavy metal distribution in different fish species from the Mauritania coast. Science of the Total Environment, 232, 169–175.

    Article  CAS  Google Scholar 

  • Sulaiman, N., George, S., & Burke, M. D. (1991). Assessment of sub lethal pollutant impact on flounders in an industrialised estuary using hepatic biochemical indices. Marine Ecology. Progress Series, 68, 207–212.

    Article  CAS  Google Scholar 

  • Yilmaz, A. B. (2003). Levels of heavy metal in tissue of Mugil cephalus and Trachurus mediterraneus from Iskenderun Bay, Turkey. Environmental Research, 92, 277–281.

    Article  CAS  Google Scholar 

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Papetti, P., Rossi, G. Heavy metals in the fishery products of low Lazio and the use of metallothionein as a biomarker of contamination. Environ Monit Assess 159, 589–598 (2009). https://doi.org/10.1007/s10661-008-0725-4

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  • DOI: https://doi.org/10.1007/s10661-008-0725-4

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