Evaluation of susceptibility test breakpoints used to predict mecA-mediated resistance in Staphylococcus

David A Bemis1, Rebekah D Jones, Linda A Frank

  • 1Department of Comparative Medicine, College of Veterinary Medicine, The University of Tennessee, Knoxville, TN 37901-1071, USA. bemis@utk.edu

Insights

Oxacillin resistance in Staphylococcus pseudintermedius is increasing in dogs, with over 90% of resistant isolates also showing resistance to other antibiotics. Cefoxitin disk diffusion tests are unreliable for detecting this resistance.

Area of Science:

  • Veterinary Microbiology
  • Antimicrobial Resistance
  • Clinical Diagnostics

Background:

  • Interpretive breakpoints for oxacillin resistance in Staphylococcus pseudintermedius have undergone changes, with no specific guidelines for human isolates.
  • Laboratories inconsistently apply breakpoints intended for Staphylococcus aureus or coagulase-negative staphylococci.

Purpose of the Study:

  • To evaluate the correlation between various testing methods for predicting mecA-mediated oxacillin resistance in S. pseudintermedius.
  • To estimate the prevalence and increase of oxacillin resistance in canine S. pseudintermedius isolates.

Main Methods:

  • Correlating oxacillin disk diffusion, gradient diffusion, and microbroth dilution with mecA detection via polymerase chain reaction.
  • Retrospective analysis of disk diffusion zone diameters from canine isolates.

Main Results:

  • Oxacillin disk diffusion zone diameters (≤17 mm) and minimum inhibitory concentrations (≥0.5 µg/mL) strongly correlated with mecA detection.
  • MecA-mediated resistance in canine S. pseudintermedius rose from <5% in 2001 to ~30% in 2007.
  • Cefoxitin disk diffusion (≤24 mm breakpoint) underestimated mecA presence.

Conclusions:

  • Oxacillin resistance in S. pseudintermedius is a growing concern in canine populations.
  • Most methicillin-resistant S. pseudintermedius isolates exhibit multidrug resistance.
  • Current cefoxitin disk diffusion breakpoints are inadequate for S. pseudintermedius.