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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.
Abstract:
OBJECTIVE Candida auris (CA) is an emerging multidrug-resistant pathogen associated with increased mortality. The environment may play a role, but transmission dynamics remain poorly understood. We sought to limit environmental and patient CA contamination following a sustained unsuspected exposure. DESIGN Quasi-experimental observation. SETTING A 528-bed teaching hospital. PATIENTS The index case patient and 17 collocated ward mates. INTERVENTION Immediately after confirmation of CA in the bloodstream and urine of a patient admitted 6 days previously, active surveillance, enhanced transmission-based precautions, environmental cleaning with peracetic acid-hydrogen peroxide and ultraviolet light, and patient relocation were undertaken. Pre-existing agreements and foundational relationships among internal multidisciplinary teams and external partners were leveraged to bolster detection and mitigation efforts and to provide genomic epidemiology. RESULTS Candida auris was isolated from 3 of 132 surface samples on days 8, 9, and 15 of ward occupancy, and from no patient samples (0 of 48). Environmental and patient isolates were genetically identical (4-8 single-nucleotide polymorphisms [SNPs]) and most closely related to the 2013 India CA-6684 strain (~200 SNPs), supporting the epidemiological hypothesis that the source of environmental contamination was the index case patient, who probably acquired the South Asian strain from another New York hospital. All isolates contained a mutation associated with azole resistance (K163R) found in the India 2105 VPCI strain but not in CA-6684. The index patient remained colonized until death. No surfaces were CA-positive 1 month later. CONCLUSION Compared to previous descriptions, CA dissemination was minimal. Immediate access to rapid CA diagnostics facilitates early containment strategies and outbreak investigations. Infect Control Hosp Epidemiol 2018;39:53-57.
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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