Isolation and characterisation of dog uropathogenic Proteus mirabilis strains

W Gaastra1, R A van Oosterom, E W Pieters

  • 1Institute of Infectious Diseases and Immunology, University of Utrecht, The Netherlands.

Veterinary Microbiology
|January 1, 1996
PubMed

Insights

Proteus mirabilis, a bacterium causing urinary tract infections in dogs, frequently appears in feces of those with recurrent infections. Dog and human strains exhibit similar virulence factors, suggesting a shared origin.

Area of Science:

  • Veterinary Microbiology
  • Uropathogen Research
  • Canine Infectious Diseases

Background:

  • Proteus mirabilis is a significant cause of canine urinary tract infections (UTIs).
  • Recurrent UTIs in dogs are often associated with specific bacterial strains.
  • Understanding virulence factors like haemolysin and fimbriae is crucial for canine UTI pathogenesis.

Purpose of the Study:

  • To characterize Proteus mirabilis strains from dogs with UTIs.
  • To investigate the production of haemolysin and fimbriae in these strains.
  • To compare dog-derived P. mirabilis with human uropathogenic strains.

Main Methods:

  • Isolation and characterization of P. mirabilis from canine urine and feces.
  • Detection of haemolytic activity.
  • Electron microscopy for fimbriae visualization.
  • Southern hybridization to identify genes for fimbrial subunits (MR/P-like, UCA-like).

Main Results:

  • P. mirabilis was prevalent in feces of dogs with recurrent UTIs.
  • Most P. mirabilis strains produced haemolysin and fimbriae.
  • Genes for MR/P-like or UCA-like fimbrial subunits were detected in P. mirabilis but not in other Proteeae species.
  • UCA fimbrial subunits from dogs and humans showed identical molecular weights, N-terminal sequences, and cross-reactivity.

Conclusions:

  • Dog uropathogenic P. mirabilis strains share significant similarities with human strains.
  • Fimbriae and haemolysin production are common virulence factors in canine P. mirabilis.
  • The findings suggest a potential commonality in the pathogenesis of P. mirabilis UTIs across species.