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Murine Corneal Transplantation: A Model to Study the Most Common Form of Solid Organ Transplantation
Published on: November 17, 2014
Linezolid- and Vancomycin-resistant Enterococcus faecium in Solid Organ Transplant Recipients: Infection Control and
Lilian Abbo1,2, Bhavarth S Shukla1, Amber Giles2
1Department of Infection Control and Prevention and Antimicrobial Stewardship Program, Jackson Memorial Hospital, Miami, Florida.
Background:
Vancomycin-resistant enterococci are an important cause of healthcare-associated infections and are inherently resistant to many commonly used antibiotics. Linezolid is the only drug currently approved by the US Food and Drug Administration to treat vancomycin-resistant enterococci; however, resistance to this antibiotic appears to be increasing. Although outbreaks of linezolid- and vancomycin-resistant Enterococcus faecium (LR-VRE) in solid organ transplant recipients remain uncommon, they represent a major challenge for infection control and hospital epidemiology.
Methods:
We describe a cluster of 4 LR-VRE infections among a group of liver and multivisceral transplant recipients in a single intensive care unit. Failure of treatment with linezolid in 2 cases led to a review of standard clinical laboratory methods for susceptibility determination. Testing by alternative methods including whole genome sequencing (WGS) and a comprehensive outbreak investigation including sampling of staff members and surfaces was performed.
Results:
Review of laboratory testing methods revealed a limitation in the VITEK 2 system with regard to reporting resistance to linezolid. Linezolid resistance in all cases was confirmed by E-test method. The use of WGS identified a resistant subpopulation with the G2376C mutation in the 23S ribosomal RNA. Sampling of staff members' dominant hands as well as sampling of surfaces in the unit identified no contaminated sources for transmission.
Conclusions:
This cluster of LR-VRE in transplant recipients highlights the possible shortcomings of standard microbiology laboratory methods and underscores the importance of WGS to identify resistance mechanisms that can inform patient care, as well as infection control and antibiotic stewardship measures.
Insights
A cluster of linezolid- and vancomycin-resistant Enterococcus faecium (LR-VRE) infections in transplant patients revealed limitations in standard lab testing. Whole genome sequencing identified resistance mechanisms, crucial for patient care and infection control.
Area of Science:
- Infectious Diseases
- Microbiology
- Genomics
Background:
- Vancomycin-resistant enterococci (VRE) cause significant healthcare-associated infections.
- Linezolid is the primary treatment for VRE, but resistance is rising.
- Linezolid- and vancomycin-resistant Enterococcus faecium (LR-VRE) outbreaks pose challenges in immunocompromised patients.
Observation:
- A cluster of 4 LR-VRE infections occurred in solid organ transplant recipients.
- Treatment failure with linezolid prompted a review of laboratory susceptibility testing.
- Standard VITEK 2 system showed limitations in detecting linezolid resistance.
Findings:
- Linezolid resistance was confirmed by E-test and whole genome sequencing (WGS).
- WGS identified a G2376C mutation in the 23S ribosomal RNA gene.
- No environmental or staff contamination sources were identified for transmission.
Implications:
- Standard laboratory methods may have shortcomings in detecting emerging resistance.
- WGS is vital for identifying resistance mechanisms and guiding patient care.
- Enhanced infection control and antibiotic stewardship are crucial for managing LR-VRE.
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