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Updated: Dec 9, 2025

Super-resolution Imaging of Proteus mirabilis Biofilm by Expansion Microscopy
Published on: July 18, 2025
Proteus mirabilis Biofilm: Development and Therapeutic Strategies
Reham Wasfi1, Samira M Hamed1, Mai A Amer1
1Department of Microbiology and Immunology, Faculty of Pharmacy, October University for Modern Sciences and Arts (MSA), Giza, Egypt.
Abstract:
Proteus mirabilis is a Gram negative bacterium that is a frequent cause of catheter-associated urinary tract infections (CAUTIs). Its ability to cause such infections is mostly related to the formation of biofilms on catheter surfaces. In order to form biofilms, P. mirabilis expresses a number of virulence factors. Such factors may include adhesion proteins, quorum sensing molecules, lipopolysaccharides, efflux pumps, and urease enzyme. A unique feature of P. mirabilis biofilms that build up on catheter surfaces is their crystalline nature owing to their ureolytic biomineralization. This leads to catheter encrustation and blockage and, in most cases, is accompanied by urine retention and ascending UTIs. Bacteria embedded in crystalline biofilms become highly resistant to conventional antimicrobials as well as the immune system. Being refractory to antimicrobial treatment, alternative approaches for eradicating P. mirabilis biofilms have been sought by many studies. The current review focuses on the mechanism by which P. mirabilis biofilms are formed, and a state of the art update on preventing biofilm formation and reduction of mature biofilms. These treatment approaches include natural, and synthetic compounds targeting virulence factors and quorum sensing, beside other strategies that include carrier-mediated diffusion of antimicrobials into biofilm matrix. Bacteriophage therapy has also shown successful results in vitro for combating P. mirabilis biofilms either merely through their lytic effect or by acting as facilitators for antimicrobials diffusion.
Insights
Proteus mirabilis forms crystalline biofilms on catheters, causing infections and antimicrobial resistance. New strategies target biofilm formation and mature biofilms, including natural compounds and bacteriophages.
Area of Science:
- Microbiology
- Infectious Diseases
Background:
- Proteus mirabilis causes catheter-associated urinary tract infections (CAUTIs).
- Biofilm formation on catheters is a key virulence factor for P. mirabilis.
- Ureolytic biomineralization leads to crystalline biofilms, catheter encrustation, and resistance.
Purpose of the Study:
- Review the mechanisms of P. mirabilis biofilm formation.
- Provide an update on strategies to prevent and reduce mature P. mirabilis biofilms.
- Highlight alternative treatment approaches beyond conventional antimicrobials.
Main Methods:
- Literature review of P. mirabilis biofilm formation.
- Analysis of current strategies for biofilm prevention and eradication.
- Evaluation of novel therapeutic approaches including natural compounds, synthetic agents, and bacteriophage therapy.
Main Results:
- P. mirabilis virulence factors contribute to biofilm development.
- Crystalline biofilm structure confers resistance to antimicrobials and host defenses.
- Various strategies show promise in combating P. mirabilis biofilms.
- Bacteriophage therapy demonstrates in vitro efficacy.
Conclusions:
- Understanding P. mirabilis biofilm formation is crucial for developing effective treatments.
- Targeting virulence factors and quorum sensing offers therapeutic potential.
- Novel approaches like bacteriophage therapy provide alternatives for resistant CAUTIs.
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