Evaluation of piperacillin-tazobactam disks using contemporary Enterobacterales isolates suggests the need for disk

Ayesha Khan1, Carmila Manuel1, Richard Maynard1

  • 1Department of Pathology, Microbiology and Immunology, Vanderbilt University Medical Center, Nashville, Tennessee, USA.

PubMed

Insights

Piperacillin-tazobactam (TZP) disk susceptibility testing faces challenges due to OXA-1 resistance. Lowering TZP disk potency improves accuracy, especially for OXA-1 harboring Enterobacterales, though no current disk is optimal.

Area of Science:

  • Antimicrobial resistance
  • Clinical microbiology
  • Infectious diseases

Background:

  • Piperacillin-tazobactam (TZP) is a critical broad-spectrum antibiotic for Gram-negative infections.
  • OXA-1 β-lactamases confer resistance to TZP in Enterobacterales, complicating susceptibility testing.
  • Recent breakpoint revisions by CLSI highlight potential inaccuracies with existing TZP disk diffusion methods.

Purpose of the Study:

  • To evaluate the performance of current piperacillin-tazobactam (TZP) disk diffusion methods against contemporary Enterobacterales isolates.
  • To assess the impact of different TZP disk potencies on susceptibility testing accuracy, particularly for OXA-1 producers.
  • To explore the potential of a novel 20/5 µg TZP disk for improved accuracy.

Main Methods:

  • Disk mass titration study involving 100 Enterobacterales isolates, including 40 harboring blaOXA-1.
  • Comparison of 100/10 µg (CLSI) and 30/6 µg (EUCAST) TZP disks against reference broth microdilution.
  • Evaluation of a newly developed 20/5 µg TZP disk using CLSI breakpoints and error-rate-bounded methods.

Main Results:

  • The 100/10 µg disk showed 68% categorical agreement (CA) with CLSI breakpoints, while the 30/6 µg disk had 88% CA with EUCAST breakpoints.
  • The 20/5 µg disk achieved 81% CA with CLSI breakpoints, demonstrating improved performance over the 100/10 µg disk.
  • Decreasing TZP disk potency enhanced overall disk diffusion performance and the separation of susceptible from non-susceptible isolates, especially those with OXA-1.

Conclusions:

  • Current piperacillin-tazobactam (TZP) disk diffusion methods exhibit limitations in accurately detecting resistance in Enterobacterales, particularly OXA-1 producers.
  • A reduced TZP disk potency (e.g., 20/5 µg) shows promise for improving susceptibility testing accuracy and differentiating resistant strains.
  • Further optimization of TZP disk potency is needed, but funding limitations for older antimicrobials hinder comprehensive validation studies.