Related Experiment Video
Updated: Jul 6, 2026

Establishment and Characterization of UTI and CAUTI in a Mouse Model
Published on: June 23, 2015
Trimethoprim and enterococci in urinary tract infections: new perspectives on an old issue
Karin Tegmark Wisell1, Gunnar Kahlmeter, Christian G Giske
1Department of Antibiotic Resistance and Hospital Hygiene, Swedish Institute for Infectious Disease Control, 17182 Solna, Sweden. karin.tegmark-wisell@smittskyddsinstitutet.se
Abstract:
The lack of oral treatment alternatives for enterococcal urinary tract infections (UTIs) has led to a renewed interest in trimethoprim. Enterococci can incorporate exogenously produced folates and thereby reverse the effect of trimethoprim. Although a large proportion of enterococci appear susceptible to trimethoprim in vitro using standard media devoid of folates, a 360-fold increase in the MIC can be seen when susceptibility testing is performed in media containing fresh urine. Even if trimethoprim has a favourable pharmacokinetic profile, with high serum and very high urine concentrations, pharmacodynamic (PD) estimates show that a large proportion of the apparent wild-type isolates (as categorized by standard susceptibility testing) have unfavourable PD indices. The clinical efficacy of trimethoprim in enterococcal UTI is debated. We could identify not more than 38 evaluable cases of enterococcal UTI in the literature. The eradication rate was 82%. Case reports where patients on co-trimoxazole for UTI have developed bacteraemia with enterococci susceptible to trimethoprim seem to support experimental findings that standard antimicrobial susceptibility testing poorly predicts the clinical outcome of trimethoprim therapy. The European Committee on Antimicrobial Susceptibility Testing and the national breakpoint committees in Europe have recently debated the role of trimethoprim in the treatment of enterococcal UTI and agreed to categorize wild-type enterococci as intermediate to trimethoprim and trimethoprim/sulfamethoxazole. This allows the distinction between enterococci with and without acquired resistance mechanisms to trimethoprim. This review discusses the microbiological, experimental, clinical and PD aspects of the usage of trimethoprim for enterococcal UTI.
Insights
Trimethoprim shows limited efficacy for enterococcal urinary tract infections (UTIs) due to folate metabolism. Standard susceptibility tests may overestimate trimethoprim effectiveness in urine, impacting treatment outcomes.
Area of Science:
- Microbiology
- Pharmacology
- Infectious Diseases
Background:
- Enterococcal urinary tract infections (UTIs) lack effective oral treatment options, prompting interest in trimethoprim.
- Enterococci can circumvent trimethoprim's action by utilizing external folates.
- Standard in vitro susceptibility testing may not accurately reflect trimethoprim's efficacy in vivo.
Observation:
- Standard in vitro susceptibility testing often shows enterococci are sensitive to trimethoprim.
- However, susceptibility testing in fresh urine reveals significantly increased minimum inhibitory concentrations (MICs).
- Pharmacodynamic estimates suggest suboptimal treatment outcomes for many wild-type isolates despite favorable drug concentrations.
Findings:
- Clinical efficacy data for trimethoprim in enterococcal UTIs is limited, with a reported 82% eradication rate in 38 cases.
- Case reports indicate trimethoprim therapy failures, suggesting standard susceptibility tests are poor predictors of clinical outcomes.
- European committees now classify wild-type enterococci as intermediate to trimethoprim, distinguishing them from resistant strains.
Implications:
- Re-evaluation of trimethoprim's role in treating enterococcal UTIs is necessary.
- Updated susceptibility breakpoints aim to improve clinical decision-making.
- Further research is needed to optimize treatment strategies for these infections.
Related Concept Videos
Urinary Tract Infection III: Diagnostic Studies and Interprofessional Care
Urine Studies II: Urine Culture and Sensitivity Test
Urinary Tract Infection I: Introduction
Urinary Tract Infection II: Pathophysiology
Combined Effects of Drugs: Synergism
Such synergistic combinations...
Microbiota of the Urogenital Tract
