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Organochlorine pesticides in marine tucuxi dolphin milk incidentally captured with its calf in Barra de São João, east coast of Rio de Janeiro State, Brazil

Published online by Cambridge University Press:  23 March 2009

J.F. de Moura*
Affiliation:
Mestrado Saúde Pública e Meio Ambiente, Escola Nacional de Saúde Pública ENSP/FIOCRUZ Projeto de Monitoramento de Mamíferos Marinhos na Bacia de Campos, CENPES/PETROBRAS & ENSP/FIOCRUZ, Grupo de Estudos de Mamíferos Marinhos da Região dos Lagos-GEMM-Lagos
S. Siciliano
Affiliation:
Projeto de Monitoramento de Mamíferos Marinhos na Bacia de Campos, CENPES/PETROBRAS & ENSP/FIOCRUZ, Grupo de Estudos de Mamíferos Marinhos da Região dos Lagos-GEMM-Lagos Departamento de Endemias Samuel Pessoa, ENSP/FIOCRUZ
P.N. Sarcinelli
Affiliation:
Centro de Estudos da Saúde do Trabalhador e Ecologia Humana, ENSP/FIOCRUZ
S. Hacon
Affiliation:
Departamento de Endemias Samuel Pessoa, ENSP/FIOCRUZ
*
Correspondence should be addressed to: J.F. de Moura, Mestrado Saúde Pública e Meio Ambiente, Escola Nacional de Saúde Pública ENSP/FIOCRUZ email: [email protected]
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Abstract

We present the result of a milk analysis collected from a dead female of Sotalia guianensis (191 cm) incidentally captured in gill-net fishery together with its calf (70 cm) in November 2002, in Barra de São João, east coast of Rio de Janeiro State, Brazil. The organochlorine pesticides with the highest concentration were endosulfan1 (5.86 ng g–1), followed by p-p′DDT (4.89 ng g–1), dieldrin (2.55 ng g–1) and HCB (2.41 ng g–1). These results show the high environmental persistency of these contaminants, and the transference capacity from the mother to the calf during lactation.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 2009

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References

REFERENCES

Aguilar, A. (1984) Relationship of DDE/ΣDDT in marine mammals to the chronology of DDT input into the ecosystem. Canadian Journal of Fisheries and Aquatic Sciences 41, 840844.CrossRefGoogle Scholar
Brito, E.M.S., Vieira, E.D.R., Torres, J.P.M. and Malm, O. (2005) Persistent organic pollutants in two reservoirs along the Paraíba do Sul River system, Rio de Janeiro, Brazil. Química Nova 28, 941946.CrossRefGoogle Scholar
Di Beneditto, A.P.M. and Ramos, R.M.A. (2004) Biology of the marine tucuxi dolphin (Sotalia fluviatilis) in south-easten Brazil. Journal of the Marine Biological Association of the United Kingdom 84, 12451250.CrossRefGoogle Scholar
Flores, P.A.C. and Bazzalo, M. (2004) Home ranges and movement patterns of the marine tucuxi dolphin, Sotalia fluviatilis, in Baía Norte, Southern Brazil. Latin American Journal of Aquatic Mammals 3, 3752.Google Scholar
Fukushima, M. and Kawai, S. (1981) Variation of organochlorine residue concentration and burden in striped dolphin, Stenella coeruleoalba, with growth. In Fujiyama, T. (ed.) Studies on the levels of organochlorine compounds and heavy metals in the marine organisms. Okinawa, Japan: University of Ryukyus, pp. 97114.Google Scholar
Grisolia, C.K. (2005) Agrotóxicos: mutações, câncer e reprodução. Riscos ao homem e ao meio ambiente, pela avaliação de genotoxicidade, carcinogenicidade e efeitos sobre a reprodução, 1st edn. Brasília: University of Brasília Press.Google Scholar
Hall, A.J., Kalantzi, O.I. and Thomas, G.O. (2003) Polybrominated diphenyl ethers (PBDEs) in grey seals during their first year of life— are they thyroid hormone endocrine disrupters? Environment Pollution 126, 2937.Google Scholar
Hernández, F., Serrano, R., Roig-Navarro, A.F., Martinez-Bravo, Y. and López, F.J. (2000) Persistent organochlorines and organophosphorus compounds and heavy elements in common whale (Balaenoptera physalus) from the Western Mediterranean Sea. Marine Pollution Bulletin 40, 426433.CrossRefGoogle Scholar
Kajiwara, N., Matsuoka, S., Iwata, H., Tanabe, S., Rosas, F.C.W., Fillmann, G. and Readman, J.W. (2004) Contamination by persistent organochlorines in cetaceans stranded along Brazilian coastal waters. Archives of Environmental Contamination and Toxicology 46, 124134.Google Scholar
Mesquita, S.A. (2001) Avaliação da contaminação do leite materno pôr pesticidas organoclorados persistentes em mulheres doadoras do Banco de Leite do Instituto Fernandes Figueira, R.J. Máster Dissertation, Escola Nacional de Saúde Pública ENSP/ Fundação Oswaldo Cruz FIOCRUZ, Rio de Janeiro, Brazil.Google Scholar
Prapamontol, T. and Stevenson, D. (1991) Rapid method for the determination of organochlorine pesticides in milk. Journal of Chromatography 552, 249257.Google Scholar
Reddy, M.L., Reif, J.S., Bachand, A. and Ridgway, S.H. (2001) Opportunities for using Navy marine mammals to explore associations between organochlorine contaminants and unfavorable effects on reproduction. The Science of the Total Environment 274, 171182.CrossRefGoogle ScholarPubMed
Ridgway, S. and Reddy, M. (1995) Residual levels of several organochlorines in Tursiops truncatus milk collected at various stages of lactation. Marine Pollution Bulletin 30, 609614.CrossRefGoogle Scholar
Rosas, F.C.W. and Monteiro-Filho, E.L.A. (2002) Reproduction of the estuarine dolphin (Sotalia guianensis) on the coast of Paraná, Southern Brazil. Journal of Mammalogy 83, 507515.Google Scholar
Siciliano, S., Alves, V.C. and Hacon, S. (2005) Aves e mamíferos marinhos como sentinelas ecológicas da saúde ambiental: uma revisão do conhecimento brasileiro. Cadernos Saúde Coletiva 13, 927946.Google Scholar
Tanabe, S. (2002) Contamination and toxic effects of persistent endocrine disrupters in marine mammals and birds. Marine Pollution Bulletin 45, 6977.CrossRefGoogle ScholarPubMed
Tanabe, S., Iwata, H. and Tatsukawa, R. (1994) Global contamination by persistent organochlorines and their ecological impacts on marine mammals. The Science of the Total Environment 154, 163177.Google Scholar
Wells, R.S., Tornero, T.V., Borell, A., Aguilar, A., Rowles, T.K., Rhinehart, H.L., Hofmann, S., Jarman, W.M., Hohn, A.A. and Sweeney, J.C. (2005) Integrating life-history and reproductive success data to examine potential relationships with organochlorine compounds for bottlenose dolphins (Tursiops truncatus) in Sarasota Bay, Florida. The Science of the Total Environment 349, 106119.CrossRefGoogle ScholarPubMed
Yogui, G.T., Santos, M.C.D. and Montone, R.C. (2003) Chlorinated pesticides and polychlorinated biphenyls in marine tucuxi dolphins (Sotalia fluviatilis) from the Cananéia estuary, south-eastern Brazil. The Science of the Total Environment 312, 6778.CrossRefGoogle Scholar