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An analysis of the susceptibilities of several populations of Rattus norvegicus to warfarin

Published online by Cambridge University Press:  15 May 2009

Joe E. Brooks
Affiliation:
Bureau of Rodent Control, New York State Department of Health
Alan M. Bowerman
Affiliation:
Bureau of Rodent Control, New York State Department of Health
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Summary

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An analysis was made of the dose-response of several populations of Rattus norvegicus fed upon baits containing 0·005% warfarin for various numbers of days. Warfarin-susceptible populations fell within a narrow range, with LFP50s and LFP98s (lethal feeding periods in days to obtain 50% and 98% mortalities respectively) of up to 3·0 and 5·0 days respectively. The probability of an individual rat from these populations surviving a six-day feeding period was estimated at 0·003 or less. Populations with responses falling beyond these limits were regarded as warfarin-resistant.

Six of nine populations of R. norvegicus, from England, Germany and the United States, were determined to be warfarin-susceptible within the narrow limits given above. In all six cases, no animals survived the six-day WHO feeding test for anticoagulant susceptibility. In three populations from the United States, where rats survived six days feeding, their population responses clearly fell outside the measures given above. It is suggested, tentatively, that anticoagulantresistant Norway rat populations be defined as those whose LFP50 and LFP98 exceeds 3·0 and 5·0 days respectively, and in which the probability of an individual animal surviving a six-day feeding upon 0·005% warfarin is 0·01 or more.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1974

References

REFERENCES

Bentley, E. W. (1969). The warfarin resistance problem in England and Wales. Schriftenreihe des Vereins für Wasser., Boden- und Lufthygiene 32, 1925.Google ScholarPubMed
Brooks, J. E. & Bowerman, A. M. (1973). Anticoagulant resistance in wild Norway rats in New York. Journal of Hygiene 71, 217–22.Google Scholar
Drummond, D. C. (1966). Tentative instructions for determining the susceptibility of rodents to anticoagulant rodenticides. World Health Organization, Seminar on Rodents and Rodent Ectoparasites 66.217, 139–48.Google Scholar
Drummond, D. C. & Wilson, E. J. (1968). Laboratory investigation of resistance to warfarin of Rattus norvegicus Berk. in Montgomeryshire and Shropshire. Annals of Applied Biology 61, 303–12.Google Scholar
Jackson, W. B., Brooks, J. E., Bowerman, A. M. & Kaukeinen, D. E. (1973). Anticoagulant resistance in Norway rats in U.S. cities. Pest Control 41 (4), 56, 81.Google Scholar
Litchfield, J. T. Jr. & Wilcoxon, F. (1949). A simplified method of evaluating dose–effect experiments. Journal of Pharmacology and Experimental Therapeutics 96, 99113.Google ScholarPubMed
Rowe, F. P. & Redfern, R. (1964). The toxicity of 0·025% warfarin to wild house mice (Mus musculus L.). Journal of Hygiene 62, 389–93.CrossRefGoogle ScholarPubMed
Telle, H. J. (1971). Resistance to warfarin of the Brown rat (R. norvegicus) in Germany. World Health Organization, VBC/71.331, 5 pp. (Unpublished working paper.)Google Scholar
World Health Organization (1970). Provisional instructions for determining the susceptibility of rodents to anticoagulant rodenticides. World Health Organization, Technical Report Series, no. 443, pp. 140–7.Google Scholar