Urinary tract E. coli: the good guys versus the bad guys

Funding Activity

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Funded Activity Summary

Escherichia coli is the primary cause of urinary tract infection (UTI) in the developed world. In Australia alone, E. coli affects more than 250,000 yearly to the extent where they require medical intervention. It is estimated that one in four women and one in twenty men will develop a UTI in their lifetime and in the USA UTIs result in $1.6 billion in medical expenses each year. Uropathogenic E. coli (UPEC) strains readily form biofilms on indwelling catheters and recent evidence suggests that they also form biofilm-like aggregates in the bladder. No treatment other than antibiotics (often inefficient due to resistance) is currently available. E. coli is also the most frequent cause of asymptomatic bacteriuria (ABU). ABU occurs in up to 6% of healthy individuals and affects high risk groups such as the elderly and diabetics. In general, most patients with ABU do not need treatment and in many cases the colonizing organism actually helps to prevent infection by other more virulent bacteria. The aim of this project is to compare UPEC and ABU E. coli for differences associated with virulence and biofilm growth. The project will generate a comprehensive and defined strain bank relative to E. coli that cause UTI. Understanding biofilm growth by this organism may lead to the development of improved and-or novel treatments. Furthermore, increased knowledge of ABU E. coli is essential if we are to fully explore the possibility of employing these organisms as probiotic agents to prevent infection by other pathogens in specific high risk patient groups.

Funded Activity Details

Start Date: 01-01-2007

End Date: 01-01-2008

Funding Scheme: NHMRC Project Grants

Funding Amount: $296,150.00

Funder: National Health and Medical Research Council

Research Topics

ANZSRC Field of Research (FoR)

Medical Bacteriology

ANZSRC Socio-Economic Objective (SEO)

There are no SEO codes available for this funding activity

Other Keywords

bacterial pathogenicity | bacterial virulence factors | biofilm | biofilm contamination on instruments and implants | gene regulation | pathogenesis | urinary bladder | urinary tract infection | vaccine development