Efficacy of various therapeutic regimens in eliminating Pasteurella pneumotropica from the mouse

M F Goelz1, J E Thigpen, J Mahler

  • 1Comparative Medicine Branch, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina 27709, USA.

Laboratory Animal Science
|June 1, 1996
PubMed

Insights

Enrofloxacin effectively eliminated Pasteurella pneumotropica in mice at higher doses (25.5 and 85 mg/kg) via oral or parenteral routes. This offers a practical alternative to costly rederivation methods for pathogen eradication.

Area of Science:

  • Veterinary Microbiology
  • Animal Health
  • Antimicrobial Efficacy

Background:

  • Pasteurella pneumotropica is an opportunistic pathogen in mice, causing various infections.
  • Enrofloxacin is a fluoroquinolone effective against P. multocida in rabbits.
  • Asymptomatic P. pneumotropica infections in mice necessitate effective elimination strategies.

Purpose of the Study:

  • To evaluate the efficacy of enrofloxacin in eliminating P. pneumotropica from asymptomatically infected mice.
  • To compare oral versus parenteral administration of enrofloxacin at different dosages.
  • To assess enrofloxacin as a cost-effective alternative to rederivation.

Main Methods:

  • Culture and immunofluorescence assay confirmed P. pneumotropica-positive mice (n=110).
  • Mice were assigned to enrofloxacin (oral/parenteral, 3 dosages), tetracycline, or control groups.
  • Oropharyngeal swabs, fecal samples, and organ tissues were analyzed post-treatment.

Main Results:

  • Enrofloxacin at 25.5 and 85 mg/kg/day eliminated P. pneumotropica for ≥30 days.
  • Lower dosage (8.5 mg/kg/day) and control/tetracycline groups remained culture-positive.
  • Oral administration was identified as a practical delivery route.

Conclusions:

  • Enrofloxacin is effective in eradicating P. pneumotropica in mice at appropriate dosages and routes.
  • Oral enrofloxacin presents a practical and economical alternative to cesarean rederivation or embryo transfer.
  • This study supports enrofloxacin as a viable tool for maintaining P. pneumotropica-free mouse colonies.

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