Vet Med - Czech, 2013, 58(10):553-559 | DOI: 10.17221/7087-VETMED
Secondary poisoning of non-target animals in an Ornithological Zoo in Galicia (NW Spain) with anticoagulant rodenticides: a case reportCase Report
- 1 University of Extremadura, Caceres, Spain
- 2 Universidad Autonoma de Chile, Temuco, Chile
- 3 University of Santiago de Compostela, Lugo, Spain
The use of anticoagulants has increased in recent times as a method for controlling rodent populations. However, this increased use also provokes accidental and intentional ingestion for both animals and humans, triggering poisoning of non-target organisms. In the present report, a clinical case of secondary-poisoning of birds with anticoagulant rodenticides, which took place after a general rodenticide treatment in an Ornithological Zoological Park, is described. Three birds died as a result and samples were submitted to the Veterinary Hospital in Lugo (Galicia, NW Spain). After necropsy, samples of the birds, together with molluscs and faeces, were submitted to the Toxicology Unit of Caceres (Extremadura, W Spain) in order to detect possible chemicals. Results from HPLC analyses revealed the presence of the rodenticides difenacoum and brodifacoum. The present report shows that the risk of secondary exposure resulting from the scavenging of molluscs is likely to be significant. The potential routes of uptake by invertebrates include the consumption of rodent faeces, rodent carcases, the ingestion of soil-bound residues, and the direct consumption of poison baits.
Keywords: anticoagulants; birds; recovery centre; snails; poisoning
Published: October 31, 2013 Show citation
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References
- Albert CA, Wilson LK, Mineau P, Trudeau S, Elliott JE (2010): Anticoagulant rodenticides in three owl species from Western Canada, 1988-2003. Archives of Environmental Contamination and Toxicology 58, 451-459.
Go to original source...
Go to PubMed...
- Berny PJ, Buronfosse T, Buronfosse F, Lamarque F, Lorgue G (1997): Field evidence of secondary poisoning of foxes (Vulpes vulpes) and buzzards (Buteo buteo) by bromadiolone, a 4-year survey. Chemosphere 35, 1817-1829.
Go to original source...
Go to PubMed...
- Binev R, Petkov P, Rusenov A (2005): Intoxication with anticoagulant rodenticide bromadiolone in a dog - a case report. Veterinarski Arhiv 75, 273-282.
- Birks JDS (1998): Secondary rodenticide poisoning risk arising from winter farmyard use by the European polecat Mustela putorius. Biology Conservation 85, 233-240.
Go to original source...
- Booth LH, Eason CT, Spurr EB (2001): Literature review of the acute toxicity and persistence of brodifacoum to invertebrates. Science for the Conservation 177, 1-9.
- Borst GHA, Counotte GHM (2002): Shortfalls using second-generation anticoagulant rodenticides. Journal of Zoo and Wildlife Medicine 33, 85.
Go to original source...
Go to PubMed...
- Craddock P (2002): Aspects of the ecology of forest invertebrates and the use of brodifacoum. [PhD Thesis.] University of Auckland, New Zealand.
- Dowding JE, Lovegrove TG, Ritchie J, Kast SN, Puckett M (2006): Mortality of northern New Zealand dotterels (Charadrius obscurus aquilonius) following an aerial poisoning operation. Notornis 53, 235-239.
- Dowding CV, Shore RF, Worgan A, Baker PJ, Harris S (2010): Accumulation of anticoagulant rodenticides in a non-target insectivore, the European hedgehog (Erinaceus europaeus). Environmental Pollution158, 161-166.
Go to original source...
- Elmeros M, Christensen TK, Lassen P (2011): Concentrations of anticoagulant rodenticides in stoats Mutela erminea and weasels Mustela nivalis from Denmark. Science of the Total Environment 409, 2373-2378.
Go to original source...
Go to PubMed...
- Erickson W, Urban D (2004): Potential risks of nine rodenticides to birds and non-target mammals: a comparative approach. US Environmental Protection Agency. Washington DC. 225 pp. http://www.fluoridealert.org/wpcontent/pesticides/EPA-HQ-OPP-2006-0955-0005.pdf
- Fauconnet V, Pouliquen H, Pinault L (1997): Reversedphase HPLC determination of eight anticoagulant rodenticides in animal liver. Journal of Analytical Toxicology21, 548-553.
Go to original source...
- Giorgi M, Mengozzi G (2011): Malicious animal intoxications: poisoned baits. Veterinarni Medicina 56, 173-179.
Go to original source...
- Guitart R, Sachana M, Caloni F, Croubels S, Vandenbroucke V, Berny P (2010): Animal poisoning in Europe. Part 3: Wildlife. Veterinary Journal 183, 260-265.
Go to original source...
Go to PubMed...
- Johnston JJ, Pitt WC, Sugihara RT, Eisemann JD, Primus TM, Holmes MJ, Crocker J, Hart A (2005): Probabilistic risk assessment for snails, slugs, ad endangered honeycreepers in diphacinone rodenticide baited areas on Hawaii, USA. Environmental Toxicology and Chemistry24, 1557-1567.
Go to original source...
- Matolcsy G, Nadasy M, Andriska V (eds.) (1988) Pesticide Chemistry. Elsevier, New York.
- Merson MH, Byers RE, Kaukeinen DE (1984): Residues of the rodenticide brodifacoum in voles and raptors after orchard treatment. Journal of Wildlife Manage 48, 212-216.
Go to original source...
- Murphy MJ (2002): Rodenticides. Veterinary Clinics of North America: Small Animal Practice 32, 469-484.
Go to original source...
Go to PubMed...
- Murray M (2011): Anticoagulant rodenticide exposure and toxicosis in four species of birds of prey presented to a Wildlife clinic in Massachusetts, 2006-2010. Journal of Zoo and Wildlife Medicine 42, 88-97.
Go to original source...
Go to PubMed...
- Newton I, Wyllie I, Freestone P (1990): Rodenticides in British barn owls. Environmental Pollution 68, 101-117.
Go to original source...
Go to PubMed...
- Sage M, Coeurdassier M, Defaut R, Gimbert F, Berny P, Giraudoux P (2008): Kinetics of bromadiolone in rodent populations and implications for predators after field control of the water vole, Arvicola terrestris. Science of the Total Environment 407, 211-222.
Go to original source...
Go to PubMed...
- Sanchez-Barbudo IS, Camarero PR, Mateo R (2012): Primary and secondary poisoning by anticoagulant rodenticides of non-target animals in Spain. Science of the Total Environment 420, 280-288.
Go to original source...
Go to PubMed...
- Shirer M (1992): In poison's defence. Terra Nova 17, 3.
- Shore RF, Birks JD, Afsar A, Wienburg CL, Kitchener AC (2003): Spatial and temporal analysis of secondgeneration anticoagulant rodenticide residues in polecats (Mustela putorius) from throughout their range in Britain, 1992-1999. Environmental Pollution 122, 183-193.
Go to original source...
Go to PubMed...
- Shore RF, Malcolm HM, Wienburg CL, Turk A, Horne JA, Dale L, Wyllie I, Newton I (2011): Wildlife and pollution: 1999-2000 Annual report, No. 321. JNCC Report.
- Spurr EB, Drew KW (1999): Invertebrates feeding on baits used for vertebrate pest control in New Zealand. New Zealand Journal of Ecology 23, 167-173.
- Thomas PJ, Mineau P, Shore RF, Champoux L, Martin PA, Wilson LK, Fitzgerald G, Elliott JE (2011): Second generation anticoagulant rodenticides in predatory birds: probabilistic characterization of toxic liver concentrations and implications for predatory bird populations in Canada. Environment International 37, 914-920.
Go to original source...
Go to PubMed...
- Walker LA, Turk A, Long SM, Wienburg CL, Best J, Shore RF (2008): Second generation anticoagulant rodenticides in tawny owls (Strix aluco) from Great Britain. Science of the Total Environment 392, 93-98.
Go to original source...
Go to PubMed...
- Winters AM, Rumbeiha WK, Winterstein SR, Fine AE, Munkhtsog B, Hickling GJ (2010): Residues in Brandt's voles (Microtus brandti) exposed to bromadioloneimpregnated baits in Mongolia. Ecotoxicology and Environmental Safety 73, 1071-1077.
Go to original source...
Go to PubMed...
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