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Updated: Nov 2, 2025

Establishment and Characterization of UTI and CAUTI in a Mouse Model
Published on: June 23, 2015
Recurrent Urinary Tract Infection: A Mystery in Search of Better Model Systems
Benjamin O Murray1, Carlos Flores1, Corin Williams2
1Centre for Urological Biology, Department of Renal Medicine, University College London, London, United Kingdom.
Abstract:
Urinary tract infections (UTIs) are among the most common infectious diseases worldwide but are significantly understudied. Uropathogenic E. coli (UPEC) accounts for a significant proportion of UTI, but a large number of other species can infect the urinary tract, each of which will have unique host-pathogen interactions with the bladder environment. Given the substantial economic burden of UTI and its increasing antibiotic resistance, there is an urgent need to better understand UTI pathophysiology - especially its tendency to relapse and recur. Most models developed to date use murine infection; few human-relevant models exist. Of these, the majority of in vitro UTI models have utilized cells in static culture, but UTI needs to be studied in the context of the unique aspects of the bladder's biophysical environment (e.g., tissue architecture, urine, fluid flow, and stretch). In this review, we summarize the complexities of recurrent UTI, critically assess current infection models and discuss potential improvements. More advanced human cell-based in vitro models have the potential to enable a better understanding of the etiology of UTI disease and to provide a complementary platform alongside animals for drug screening and the search for better treatments.
Insights
Urinary tract infections (UTIs) are common but understudied. Developing better human-relevant models is crucial for understanding recurrent UTIs and finding new treatments due to rising antibiotic resistance.
Area of Science:
- Microbiology
- Urology
- Infectious Diseases
Background:
- Urinary tract infections (UTIs) are highly prevalent globally, yet remain understudied.
- Uropathogenic Escherichia coli (UPEC) is a primary cause, but other pathogens contribute to UTI pathophysiology.
- Recurrent UTIs pose a significant challenge due to increasing antibiotic resistance and economic burden.
Purpose of the Study:
- To review the complexities of recurrent UTIs.
- To critically evaluate existing UTI infection models.
- To discuss improvements for human-relevant UTI research models.
Main Methods:
- Literature review of UTI pathophysiology and current models.
- Assessment of limitations in existing in vitro and in vivo UTI models.
- Discussion of advanced human cell-based in vitro models.
Main Results:
- Current UTI models often fail to replicate the bladder's biophysical environment (e.g., fluid flow, stretch).
- Existing models are predominantly murine-based, with limited human relevance.
- Static in vitro models do not fully capture the dynamic nature of UTI.
Conclusions:
- There is an urgent need for improved, human-relevant in vitro models for UTI research.
- Advanced models can enhance understanding of UTI etiology and recurrence.
- Better models will aid in drug screening and the development of novel UTI treatments.
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