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Published on: June 19, 2015
Multispecies Outbreak of Verona Integron-Encoded Metallo-ß-Lactamase-Producing Multidrug Resistant Bacteria Driven by
Tom J B de Man1, Anna Q Yaffee2,3, Wenming Zhu1
1Division of Healthcare Quality Promotion, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.
Background:
Antibiotic resistance is often spread through bacterial populations via conjugative plasmids. However, plasmid transfer is not well recognized in clinical settings because of technical limitations, and health care-associated infections are usually caused by clonal transmission of a single pathogen. In 2015, multiple species of carbapenem-resistant Enterobacteriaceae (CRE), all producing a rare carbapenemase, were identified among patients in an intensive care unit. This observation suggested a large, previously unrecognized plasmid transmission chain and prompted our investigation.
Methods:
Electronic medical record reviews, infection control observations, and environmental sampling completed the epidemiologic outbreak investigation. A laboratory analysis, conducted on patient and environmental isolates, included long-read whole-genome sequencing to fully elucidate plasmid DNA structures. Bioinformatics analyses were applied to infer plasmid transmission chains and results were subsequently confirmed using plasmid conjugation experiments.
Results:
We identified 14 Verona integron-encoded metallo-ß-lactamase (VIM)-producing CRE in 12 patients, and 1 additional isolate was obtained from a patient room sink drain. Whole-genome sequencing identified the horizontal transfer of blaVIM-1, a rare carbapenem resistance mechanism in the United States, via a promiscuous incompatibility group A/C2 plasmid that spread among 5 bacterial species isolated from patients and the environment.
Conclusions:
This investigation represents the largest known outbreak of VIM-producing CRE in the United States to date, which comprises numerous bacterial species and strains. We present evidence of in-hospital plasmid transmission, as well as environmental contamination. Our findings demonstrate the potential for 2 types of hospital-acquired infection outbreaks: those due to clonal expansion and those due to the spread of conjugative plasmids encoding antibiotic resistance across species.
Insights
Antibiotic resistance spread via plasmids was identified in a large hospital outbreak. This study highlights plasmid transmission across multiple bacterial species and the environment, not just clonal spread.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Genomics
Background:
- Antibiotic resistance is a growing threat, often spread by plasmids.
- Plasmid transfer in clinical settings is underrecognized due to technical challenges.
- Carbapenem-resistant Enterobacteriaceae (CRE) outbreaks are typically attributed to clonal transmission.
Purpose of the Study:
- To investigate a suspected large plasmid transmission chain of CRE in an intensive care unit.
- To identify the mechanisms and extent of antibiotic resistance spread in a clinical environment.
Main Methods:
- Epidemiologic investigation including electronic medical record reviews, infection control observations, and environmental sampling.
- Long-read whole-genome sequencing of patient and environmental isolates.
- Bioinformatics analyses for plasmid transmission inference and confirmation via conjugation experiments.
Main Results:
- Identified 14 Verona integron-encoded metallo-ß-lactamase (VIM)-producing CRE isolates from 12 patients and one environmental source.
- Demonstrated horizontal transfer of the rare blaVIM-1 gene via a promiscuous plasmid across 5 bacterial species.
- Confirmed plasmid spread among patient and environmental isolates.
Conclusions:
- This represents the largest known outbreak of VIM-producing CRE in the US, involving multiple species.
- Provided evidence for in-hospital plasmid transmission and environmental contamination.
- Highlighted that hospital-acquired infections can arise from both clonal expansion and inter-species plasmid spread of antibiotic resistance.
Related Concept Videos
Antibiotic Selection
Development of Antibiotic Resistance
Conjugation
Stringent Response in E. coli
Viral Recombination

