CORYNEBACTERIAL PSEUDOTUBERCULOSIS IN MICE. I. COMPARATIVE SUSCEPTIBILITY OF MOUSE STRAINS TO EXPERIMENTAL INFECTION

Insights

Mice exhibit varied susceptibility to Corynebacterium kutscheri infection, with distinct genetic types showing differential mortality. This study identifies specific mouse strains as models for investigating resistance to bacterial pseudotuberculosis.

Area of Science:

  • Immunology
  • Microbiology
  • Genetics

Background:

  • Corynebacterium kutscheri causes pseudotuberculosis, a significant disease in laboratory mice.
  • Host susceptibility to C. kutscheri varies considerably among different mouse genetic types.

Purpose of the Study:

  • To investigate the differential susceptibility of various mouse genetic types to experimental Corynebacterium kutscheri infection.
  • To establish susceptible and resistant mouse strains as models for studying host resistance mechanisms.

Main Methods:

  • Intravenous administration of a standardized infective dose of C. kutscheri to mice from 31 colonies (15 genetic types).
  • Observation of mortality rates and detailed pathological examination of susceptible (Swiss Lynch) and resistant (C57Bl/6) strains.
  • Bacteriological analysis of organ homogenates to assess bacterial load and identify colony morphology.

Main Results:

  • Two distinct groups of mice emerged: one with high mortality (e.g., Swiss Lynch) and one with complete survival (e.g., C57Bl/6).
  • Swiss Lynch mice showed rapid C. kutscheri multiplication in multiple organs, leading to death.
  • C57Bl/6 mice controlled the infection, with transient kidney multiplication and clearance, and distinct colony morphologies observed in some organs.

Conclusions:

  • Mouse genetic background significantly influences the outcome of C. kutscheri infection.
  • Swiss Lynch and C57Bl/6 strains serve as valuable models for studying the factors underlying resistance to bacterial pseudotuberculosis.
  • Understanding these resistance mechanisms is crucial for research involving murine models.

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