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Updated: Aug 19, 2025

An In Vitro Bladder Model of Catheter-Associated Urinary Tract Infection
Published on: June 24, 2025
Cost-effectiveness analysis of hydrophilic-coated catheters in long-term intermittent catheter users in the UK
Hannah Baker1, Brooke Avey1, Line Overbeck Rethmeier2
1York Health Economics Consortium, York, UK.
Insights
Hydrophilic-coated intermittent catheters (HCICs) are a cost-effective choice over uncoated versions, significantly reducing catheter-associated urinary tract infections (CAUTIs). This leads to better patient outcomes and resource savings for the NHS.
Area of Science:
- Health Economics
- Medical Device Technology
- Urology
Background:
- Intermittent urinary catheterization is common for managing bladder dysfunction.
- Catheter-associated urinary tract infections (CAUTIs) are a significant complication.
- Comparing the cost-effectiveness of different catheter types is crucial for healthcare resource allocation.
Purpose of the Study:
- To estimate the cost-effectiveness of single-use hydrophilic-coated intermittent catheters (HCICs) compared to uncoated intermittent catheters (UICs).
- To evaluate the impact on patient outcomes, specifically CAUTI reduction.
- To provide a UK National Health Service (NHS) perspective on the economic value of HCICs.
Main Methods:
- A Markov model was developed to simulate lifetime costs and clinical outcomes.
- Data were sourced from published evidence, including a network meta-analysis for CAUTI reduction.
- Health-related quality-of-life estimates and expert opinion were incorporated.
Main Results:
- HCICs are projected to prevent seven CAUTI events per patient over a lifetime.
- The incremental cost-effectiveness ratio (ICER) was £5,755 per Quality-Adjusted Life Year (QALY) gained.
- Sensitivity analyses confirmed the robustness of the results.
Conclusions:
- Hydrophilic-coated intermittent catheters (HCICs) represent a cost-effective alternative to uncoated intermittent catheters (UICs).
- The primary driver of cost-effectiveness is the significant reduction in CAUTIs.
- Widespread adoption of HCICs could lead to substantial savings in NHS resources and reduced antibiotic use.
Objective:
To estimate the cost-effectiveness of single-use hydrophilic-coated intermittent catheters (HCICs) versus single-use uncoated intermittent catheters (UICs) for urinary catheterization.
Methods:
The evaluation took a UK national health service (NHS) perspective. The population of interest were people using intermittent catheters, with either a spinal cord injury or multiple sclerosis. A Markov model was developed that estimated costs and clinical evidence over the lifetime of a hypothetical cohort and applied health-related quality-of-life estimates. Model inputs were sourced from published evidence, including a network meta-analysis to inform the treatment effect (reduction in catheter-associated urinary tract infections [CAUTIs]), and were supported by expert opinion. The model outputs included per-patient lifetime costs, quality-adjusted life years (QALYs), and the incremental cost effectiveness ratio (ICER). Event counts were also produced.
Results:
Using HCICs instead of UICs could prevent seven CAUTI events per patient over a lifetime horizon (1.8 requiring secondary care). Overall, lifetime use of HCICs is £3,183 more expensive than use of UICs per patient. However, for these additional costs, 0.55 QALYs are gained. The ICER is £5,755 per additional QALY gained. Key drivers of the model results were identified and subject to sensitivity analyses. The results were found to be robust to parameter uncertainty.
Conclusion:
HCICs are likely to be a cost-effective alternative to UICs, a result driven by substantial reductions in the number of CAUTIs. Their adoption across clinical practice could avoid a substantial number of infections, freeing up resources in the NHS and reducing antibiotic use in urinary catheter users.
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