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Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
Evaluating veterinary Staphylococcus β-lactam breakpoint performance: a comparative analysis of individual agents
Sarah J Gefroh1, Briena M Meier1, Robert R Bowden2
1Veterinary Diagnostic Laboratory, North Dakota State University, Fargo, North Dakota, USA.
Abstract:
Staphylococcus pseudintermedius is an important pathogen in companion animals. Accurate detection and reporting of mecA-mediated resistance to β-lactam antimicrobials is essential for guiding appropriate antimicrobial treatments. While surrogate agents are used in human diagnostic laboratories to predict β-lactam results in staphylococci, individual β-lactam breakpoints are published for veterinary staphylococci, discouraging the use of a surrogate. Comparative performance of these individual β-lactam breakpoints to predict methicillin-resistance in veterinary Staphylococcus species has not been previously evaluated. This study evaluated oxacillin's accuracy at detecting mecA presence and performance as a surrogate for β-lactams in S. pseudintermedius from canids and felids. Antimicrobial susceptibility data for S. pseudintermedius were obtained from clinical isolates (n = 1,914) from veterinary diagnostic laboratories across the United States and Canada and included broth microdilution results for amoxicillin-clavulanate, cefazolin, cefovecin, cefpodoxime, cephalothin, and oxacillin, along with the corresponding presence or absence of mecA. Agreement analysis, sensitivities, and specificities were calculated to compare oxacillin performance with individual β-lactams. Oxacillin demonstrated the highest sensitivity for the prediction of mecA-mediated resistance among all antimicrobials analyzed. For isolates possessing mecA, the proportion showing resistant minimum inhibitory concentrations to β-lactams other than oxacillin was low, ranging between 16.5% and 85%. Additionally, when compared to oxacillin, all β-lactams other than cefovecin exhibited high rates of very major discrepancies, corroborating the significant risk of reporting false susceptibility when testing these antimicrobials. These findings support utilizing oxacillin as a surrogate agent for predicting β-lactam interpretations and emphasize the necessity for clarified guidance in the Clinical Laboratory Standards Institute VET01S document.IMPORTANCEAccurate testing and reporting of β-lactam antimicrobials in Staphylococcus species are essential for guiding appropriate antimicrobial therapy in companion animals. Our findings show that oxacillin is the most sensitive antimicrobial for detecting mecA-mediated resistance when testing Staphylococcus pseudintermedius, while most other β-lactams have low sensitivity for mecA and unacceptable rates of very major discrepancies when compared to oxacillin. These results highlight the risk of reporting falsely reporting β-lactam results when interpretations are based solely on testing each individual agent. Therefore, oxacillin and cefoxitin should be used as surrogate markers for β-lactam susceptibility, as appropriate for the Staphylococcus species, to minimize the risk of reporting false susceptible results. The clarification of these criteria by the Clinical and Laboratory Standards Institute in VET01S will enhance diagnostic accuracy, aid effective antimicrobial stewardship, and improve clinical outcomes in veterinary medicine.
Insights
Oxacillin is the most sensitive antimicrobial for detecting mecA-mediated resistance in Staphylococcus pseudintermedius. Using oxacillin as a surrogate for beta-lactams improves diagnostic accuracy and antimicrobial stewardship in companion animals.
Area of Science:
- Veterinary Microbiology
- Antimicrobial Resistance
- Companion Animal Health
Background:
- Staphylococcus pseudintermedius is a key pathogen in companion animals.
- Accurate detection of mecA-mediated resistance is crucial for effective antimicrobial treatment.
- Current veterinary guidelines discourage surrogate testing for beta-lactams in staphylococci.
Purpose of the Study:
- To evaluate oxacillin's accuracy in detecting mecA presence.
- To assess oxacillin's performance as a surrogate for beta-lactams in S. pseudintermedius.
- To compare oxacillin's performance with other beta-lactams for predicting methicillin-resistance.
Main Methods:
- Analysis of antimicrobial susceptibility data from 1,914 clinical isolates of S. pseudintermedius.
- Broth microdilution testing for amoxicillin-clavulanate, cefazolin, cefovecin, cefpodoxime, cephalothin, and oxacillin.
- Calculation of agreement, sensitivity, and specificity to compare oxacillin with other beta-lactams.
Main Results:
- Oxacillin exhibited the highest sensitivity for detecting mecA-mediated resistance.
- Most mecA-positive isolates showed low resistance rates to beta-lactams other than oxacillin.
- High rates of very major discrepancies were observed for beta-lactams other than cefovecin when compared to oxacillin.
Conclusions:
- Oxacillin is a reliable surrogate agent for predicting beta-lactam interpretations in S. pseudintermedius.
- Using individual beta-lactam breakpoints risks reporting false susceptibility.
- Clarified guidance in CLSI VET01S is necessary to enhance diagnostic accuracy and antimicrobial stewardship.
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