Importation, Mitigation, and Genomic Epidemiology of Candida auris at a Large Teaching Hospital

Emil P Lesho1, Melissa Z Bronstein2, Patrick McGann3

  • 11Infectious Diseases Unit,Rochester Regional Health,Rochester,New York.

Insights

Rapid containment strategies limited the spread of the multidrug-resistant Candida auris (CA) pathogen in a hospital setting. Enhanced cleaning and surveillance prevented further patient contamination after initial detection.

Area of Science:

  • Infectious Diseases
  • Hospital Epidemiology
  • Antimicrobial Resistance

Background:

  • Candida auris (CA) is an emerging multidrug-resistant pathogen linked to high mortality rates.
  • Environmental contamination and transmission dynamics of CA are not well understood.
  • Sustained, unsuspected exposure can lead to CA contamination in healthcare settings.

Purpose of the Study:

  • To investigate and limit environmental and patient contamination by Candida auris following a sustained, unsuspected exposure.
  • To evaluate the effectiveness of rapid containment strategies in a hospital ward.

Main Methods:

  • A quasi-experimental observational study was conducted in a 528-bed teaching hospital.
  • Interventions included active surveillance, enhanced precautions, environmental disinfection (peracetic acid-hydrogen peroxide, UV light), and patient relocation.
  • Genomic epidemiology was used to trace the source and spread of the pathogen.

Main Results:

  • Candida auris was detected in 3 of 132 environmental surface samples but in none of the 48 patient samples.
  • Environmental and patient isolates were genetically identical, indicating the index patient as the source.
  • The index patient, colonized with an azole-resistant strain, remained positive until death; no surfaces were positive one month post-intervention.

Conclusions:

  • Minimal dissemination of Candida auris was observed compared to previous reports.
  • Prompt implementation of rapid diagnostics and containment measures is crucial for controlling CA outbreaks.
  • Effective multidisciplinary collaboration is essential for successful mitigation efforts.

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