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Updated: Feb 12, 2026

Using Micro-Electro-Mechanical Systems MEMS to Develop Diagnostic Tools
Published on: October 1, 2007
Development of diagnostic prediction tools for bacteraemia caused by third-generation cephalosporin-resistant
W C Rottier1, C H van Werkhoven1, Y R P Bamberg1
1Julius Center for Health Sciences and Primary Care, University Medical Centre Utrecht, The Netherlands.
Objectives:
Current guidelines for the empirical antibiotic treatment predict the presence of third-generation cephalosporin-resistant enterobacterial bacteraemia (3GCR-E-Bac) in case of infection only poorly, thereby increasing unnecessary carbapenem use. We aimed to develop diagnostic scoring systems which can better predict the presence of 3GCR-E-Bac.
Methods:
A retrospective nested case-control study was performed that included patients ≥18 years of age from eight Dutch hospitals in whom blood cultures were obtained and intravenous antibiotics were initiated. Each patient with 3GCR-E-Bac was matched to four control infection episodes within the same hospital, based on blood-culture date and onset location (community or hospital). Starting from 32 commonly described clinical risk factors at infection onset, selection strategies were used to derive scoring systems for the probability of community- and hospital-onset 3GCR-E-Bac.
Results:
3GCR-E-Bac occurred in 90 of 22 506 (0.4%) community-onset infections and in 82 of 8110 (1.0%) hospital-onset infections, and these cases were matched to 360 community-onset and 328 hospital-onset control episodes. The derived community-onset and hospital-onset scoring systems consisted of six and nine predictors, respectively. With selected score cut-offs, the models identified 3GCR-E-Bac with sensitivity equal to existing guidelines (community-onset: 54.3%; hospital-onset: 81.5%). However, they reduced the proportion of patients classified as at risk for 3GCR-E-Bac (i.e. eligible for empirical carbapenem therapy) with 40% (95%CI 21-56%) and 49% (95%CI 39-58%) in, respectively, community-onset and hospital-onset infections.
Conclusions:
These prediction scores for 3GCR-E-Bac, specifically geared towards the initiation of empirical antibiotic treatment, may improve the balance between inappropriate antibiotics and carbapenem overuse.
Insights
New scoring systems can better predict third-generation cephalosporin-resistant enterobacterial bacteraemia (3GCR-E-Bac). These tools aim to reduce unnecessary carbapenem use in empirical antibiotic treatment for infections.
Area of Science:
- Infectious Diseases
- Clinical Microbiology
- Antimicrobial Stewardship
Background:
- Current guidelines inadequately predict third-generation cephalosporin-resistant enterobacterial bacteraemia (3GCR-E-Bac).
- This leads to overuse of carbapenems for empirical antibiotic treatment.
- Improved diagnostic tools are needed to optimize antibiotic selection.
Purpose of the Study:
- To develop and validate diagnostic scoring systems for predicting 3GCR-E-Bac.
- To improve the accuracy of empirical antibiotic treatment decisions.
- To reduce the incidence of unnecessary carbapenem administration.
Main Methods:
- A retrospective nested case-control study was conducted in eight Dutch hospitals.
- Patients with 3GCR-E-Bac were matched with control infection episodes.
- Clinical risk factors were analyzed to derive predictive scoring systems for community- and hospital-onset infections.
Main Results:
- Developed community- and hospital-onset scoring systems with six and nine predictors, respectively.
- Models achieved similar sensitivity to existing guidelines but significantly reduced the proportion of patients eligible for carbapenems (40-49%).
- This reduction indicates a potential decrease in unnecessary carbapenem use.
Conclusions:
- The developed prediction scores can enhance empirical antibiotic treatment strategies.
- These scores offer a better balance between avoiding inappropriate antibiotics and preventing carbapenem overuse.
- Implementation may lead to more targeted and effective antimicrobial stewardship.
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