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Oxacillin disk diffusion testing for the prediction of penicillin resistance in Streptococcus pneumoniae
Abstract:
Objective To 1) describe the correlation between the zones of inhibition in 1-µg oxacillin disk diffusion (ODD) tests and penicillin and ceftriaxone minimum inhibitory concentrations (MICs) of meningeal and non-meningeal strains of Streptococcus pneumoniae and 2) evaluate the usefulness of the ODD test as a predictor of susceptibility to penicillin in S. pneumoniae and as a quick and cost-effective method easily implemented in a routine clinical laboratory setting. Methods S. pneumoniae isolates from healthy nasopharyngeal carriers less than 2 years old, obtained in a multicentric cross-sectional study conducted in various Peruvian hospitals and health centers from 2007 to 2009, were analyzed. Using Clinical and Laboratory Standards Institute (CLSI) breakpoints, the correlation between the zones of inhibition of the ODD test and the MICs of penicillin and ceftriaxone was determined. Results Of the 571 S. pneumoniae isolates, 314 (55%) showed resistance to penicillin (MIC ≥ 0.12 µg/mL) and 124 (21.7%) showed resistance to ceftriaxone (MIC ≥ 1 µg/mL). Comparison of the ODD test zones of inhibition and the penicillin MICs, using the CLSI meningeal breakpoints, showed good correlation (Cohen's kappa coefficient = 0.8239). Conclusions There was good correlation between ODD zones of inhibition and penicillin meningeal breakpoints but weak correlation between the ODD results and non-meningeal breakpoints for both penicillin and ceftriaxone. Therefore, the ODD test appears to be a useful tool for predicting penicillin resistance in cases of meningeal strains of S. pneumoniae, particularly in low- and middle- income countries, where MIC determination is not routinely available.
Insights
The oxacillin disk diffusion (ODD) test shows good correlation with penicillin minimum inhibitory concentrations (MICs) for meningeal Streptococcus pneumoniae strains. This makes the ODD test a useful tool for predicting penicillin resistance in these specific cases.
Area of Science:
- Clinical microbiology
- Infectious diseases
- Antimicrobial resistance
Background:
- Streptococcus pneumoniae is a leading cause of bacterial meningitis.
- Accurate and rapid susceptibility testing is crucial for effective treatment.
- Penicillin resistance in S. pneumoniae poses a significant public health challenge.
Purpose of the Study:
- To correlate oxacillin disk diffusion (ODD) test results with penicillin and ceftriaxone minimum inhibitory concentrations (MICs) for S. pneumoniae.
- To evaluate the ODD test's utility in predicting penicillin susceptibility in S. pneumoniae.
- To assess the ODD test as a cost-effective, rapid method for clinical laboratories.
Main Methods:
- Analysis of 571 S. pneumoniae isolates from Peruvian children (2007-2009).
- Determination of penicillin and ceftriaxone MICs.
- Correlation of ODD test zones of inhibition with MICs using CLSI breakpoints.
Main Results:
- 55% of isolates were resistant to penicillin (MIC ≥ 0.12 µg/mL).
- 21.7% of isolates were resistant to ceftriaxone (MIC ≥ 1 µg/mL).
- Good correlation (Cohen's kappa = 0.8239) observed between ODD zones and penicillin MICs for meningeal breakpoints.
Conclusions:
- The ODD test demonstrates good correlation with penicillin meningeal breakpoints for S. pneumoniae.
- Weak correlation was found between ODD results and non-meningeal breakpoints for penicillin and ceftriaxone.
- The ODD test is a valuable tool for predicting penicillin resistance in meningeal S. pneumoniae, especially in resource-limited settings.

