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Updated: Nov 18, 2025

Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
A Test for the Rapid Detection of the Cefazolin Inoculum Effect in Methicillin-Susceptible Staphylococcus aureus
Sandra Rincon1, Lina P Carvajal1, Sara I Gomez-Villegas2
1Molecular Genetics and Antimicrobial Resistance Unit, International Center for Microbial Genomics, Universidad El Bosque, Bogota, Colombia.
Abstract:
The cefazolin inoculum effect (CzIE) has been associated with therapeutic failures and mortality in invasive methicillin-susceptible Staphylococcus aureus (MSSA) infections. A diagnostic test to detect the CzIE is not currently available. We developed a rapid (∼3 h) CzIE colorimetric test to detect staphylococcal-β-lactamase (BlaZ) activity in supernatants after ampicillin induction. The test was validated using 689 bloodstream MSSA isolates recovered from Latin America and the United States. The cefazolin MIC determination at a high inoculum (107 CFU/ml) was used as a reference standard (cutoff ≥16 μg/ml). All isolates underwent genome sequencing. A total of 257 (37.3%) of MSSA isolates exhibited the CzIE by the reference standard method. The overall sensitivity and specificity of the colorimetric test was 82.5% and 88.9%, respectively. Sensitivity in MSSA isolates harboring type A BlaZ (the most efficient enzyme against cefazolin) was 92.7% with a specificity of 87.8%. The performance of the test was lower against type B and C enzymes (sensitivities of 53.3% and 72.3%, respectively). When the reference value was set to ≥32 μg/ml, the sensitivity for isolates carrying type A enzymes was 98.2%. Specificity was 100% for MSSA lacking blaZ The overall negative predictive value ranged from 81.4% to 95.6% in Latin American countries using published prevalence rates of the CzIE. MSSA isolates from the United States were genetically diverse, with no distinguishing genomic differences from Latin American MSSA, distributed among 18 sequence types. A novel test can readily identify most MSSA isolates exhibiting the CzIE, particularly those carrying type A BlaZ. In contrast to the MIC determination using high inoculum, the rapid test is inexpensive, feasible, and easy to perform. After minor validation steps, it could be incorporated into the routine clinical laboratory workflow.
Insights
A new colorimetric test rapidly detects the cefazolin inoculum effect (CzIE) in Staphylococcus aureus infections. This test identifies patients at risk of treatment failure, offering a feasible alternative to current methods.
Area of Science:
- Clinical microbiology
- Infectious diseases
- Antimicrobial resistance
Background:
- The cefazolin inoculum effect (CzIE) is linked to poor outcomes in methicillin-susceptible Staphylococcus aureus (MSSA) infections.
- A diagnostic tool for CzIE is currently unavailable, hindering clinical management.
Purpose of the Study:
- To develop and validate a rapid, colorimetric diagnostic test for detecting the CzIE in MSSA isolates.
- To assess the test's performance against established reference methods and identify key genetic determinants.
Main Methods:
- Development of a colorimetric assay detecting staphylococcal-β-lactamase (BlaZ) activity after ampicillin induction.
- Validation using 689 MSSA bloodstream isolates from Latin America and the US, with genome sequencing.
- Comparison with cefazolin Minimum Inhibitory Concentration (MIC) determination at a high inoculum (10^7 CFU/ml).
Main Results:
- The rapid test demonstrated 82.5% sensitivity and 88.9% specificity for detecting CzIE.
- High sensitivity (92.7%) and specificity (87.8%) were observed for isolates with type A BlaZ, the most efficient enzyme.
- The test showed excellent performance (98.2% sensitivity) when the reference MIC cutoff was increased to ≥32 μg/ml for type A BlaZ isolates.
Conclusions:
- A novel, rapid colorimetric test can effectively identify MSSA isolates with the CzIE, particularly those with type A BlaZ.
- The test is inexpensive, feasible, and easy to perform, making it suitable for clinical laboratory integration.
- This diagnostic tool has the potential to improve patient management and outcomes in invasive MSSA infections.

