Semi-Quantitative Assay to Measure Urease Activity by Urinary Catheter-Associated Uropathogens

Jesus M Duran Ramirez1,2, Jana Gomez1, Chloe L P Obernuefemann3

  • 1Department of Microbiology and Molecular Genetics, McGovern Medical School, The University of Texas Health Science Center, Houston, TX, United States.

Insights

A new semiquantitative assay rapidly detects urease-producing bacteria, aiding in preventing catheter blockages caused by catheter-associated urinary tract infections (CAUTIs). This method improves upon existing qualitative tests for diverse uropathogens.

Area of Science:

  • Microbiology
  • Infectious Diseases
  • Biotechnology

Background:

  • Catheter-associated urinary tract infections (CAUTIs) are a significant healthcare burden, often caused by urease-producing bacteria.
  • Urease activity leads to urea hydrolysis, ammonia production, and crystal formation, causing urinary catheter blockage and increasing morbidity.
  • Current clinical assays for urease detection are qualitative and may not efficiently identify all relevant uropathogens.

Purpose of the Study:

  • To develop a high-throughput, semiquantitative assay for detecting urease production in various uropathogens.
  • To improve the rapid and efficient identification of urease-producing bacteria relevant to CAUTI.
  • To provide a tool for investigating urease regulation, production, and activity across different species.

Main Methods:

  • Development of a novel, high-throughput, semiquantitative assay for urease detection.
  • Validation of the assay using purified urease, known urease-producing species (Proteus spp., Morganella morganii, Klebsiella pneumonia, Staphylococcus aureus), and a non-urease producer (Escherichia coli).
  • Comparison of the new assay's performance against the traditional Christensen Urea Agar method.

Main Results:

  • The developed assay demonstrated rapid detection of urease-producing strains.
  • The assay provided semiquantitative measurements of urease activity, unlike current qualitative methods.
  • The assay successfully identified urease production in diverse bacterial species, including those less efficiently detected by existing tests.

Conclusions:

  • The novel assay offers a faster and more informative method for detecting urease-producing uropathogens.
  • This tool can aid in understanding and potentially preventing catheter blockage and associated complications in CAUTI.
  • The assay's adaptability allows for further research into urease production under various conditions.