Related Experiment Video
Updated: Mar 28, 2026

An In Vitro Bladder Model of Catheter-Associated Urinary Tract Infection
Published on: June 24, 2025
Bacteriophage Can Prevent Encrustation and Blockage of Urinary Catheters by Proteus mirabilis
Jonathan Nzakizwanayo1, Aurélie Hanin2, Diana R Alves3
1School of Pharmacy and Biomolecular Sciences, University of Brighton, Brighton, East Sussex, United Kingdom.
Abstract:
Proteus mirabilis forms dense crystalline biofilms on catheter surfaces that occlude urine flow, leading to serious clinical complications in long-term catheterized patients, but there are presently no truly effective approaches to control catheter blockage by this organism. This study evaluated the potential for bacteriophage therapy to control P. mirabilis infection and prevent catheter blockage. Representative in vitro models of the catheterized urinary tract, simulating a complete closed drainage system as used in clinical practice, were employed to evaluate the performance of phage therapy in preventing blockage. Models mimicking either an established infection or early colonization of the catheterized urinary tract were treated with a single dose of a 3-phage cocktail, and the impact on time taken for catheters to block, as well as levels of crystalline biofilm formation, was measured. In models of established infection, phage treatment significantly increased time taken for catheters to block (∼ 3-fold) compared to untreated controls. However, in models simulating early-stage infection, phage treatment eradicated P. mirabilis and prevented blockage entirely. Analysis of catheters from models of established infection 10 h after phage application demonstrated that phage significantly reduced crystalline biofilm formation but did not significantly reduce the level of planktonic cells in the residual bladder urine. Taken together, these results show that bacteriophage constitute a promising strategy for the prevention of catheter blockage but that methods to deliver phage in sufficient numbers and within a key therapeutic window (early infection) will also be important to the successful application of phage to this problem.
Insights
Bacteriophage therapy shows promise in preventing catheter blockage caused by Proteus mirabilis. Early-stage treatment eradicated the bacteria, while later treatment significantly delayed blockage and reduced biofilm formation.
Area of Science:
- Microbiology
- Infectious Diseases
- Biotechnology
Background:
- Proteus mirabilis forms crystalline biofilms on catheters, causing urinary tract blockages and clinical complications.
- Current methods to control P. mirabilis catheter blockage are ineffective.
Purpose of the Study:
- To evaluate bacteriophage therapy for controlling P. mirabilis infection and preventing catheter blockage.
- To assess phage therapy's efficacy in simulated early-stage and established infections.
Main Methods:
- Utilized in vitro models of the catheterized urinary tract simulating a closed drainage system.
- Administered a single dose of a 3-phage cocktail to models with established or early-stage P. mirabilis infection.
- Measured time to catheter blockage and crystalline biofilm formation.
Main Results:
- Phage treatment increased time to catheter blockage by approximately 3-fold in established infections.
- Phage treatment eradicated P. mirabilis and prevented blockage entirely in early-stage infections.
- Phage significantly reduced crystalline biofilm formation but not planktonic cells in established infections.
Conclusions:
- Bacteriophage therapy is a promising strategy for preventing catheter blockage.
- Successful application requires timely delivery of sufficient phage numbers during the early infection window.
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