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Molecular epidemiology of vancomycin-resistant Enterococcus faecium: a prospective, multicenter study in South
Diana Panesso1, Jinnethe Reyes, Sandra Rincón
1Molecular Genetics and Antimicrobial Resistance Unit, Universidad El Bosque, Bogotá, Colombia.
Abstract:
Enterococcus faecium has emerged as an important nosocomial pathogen worldwide, and this trend has been associated with the dissemination of a genetic lineage designated clonal cluster 17 (CC17). Enterococcal isolates were collected prospectively (2006 to 2008) from 32 hospitals in Colombia, Ecuador, Perú, and Venezuela and subjected to antimicrobial susceptibility testing. Genotyping was performed with all vancomycin-resistant E. faecium (VREfm) isolates by pulsed-field gel electrophoresis (PFGE) and multilocus sequence typing. All VREfm isolates were evaluated for the presence of 16 putative virulence genes (14 fms genes, the esp gene of E. faecium [espEfm], and the hyl gene of E. faecium [hylEfm]) and plasmids carrying the fms20-fms21 (pilA), hylEfm, and vanA genes. Of 723 enterococcal isolates recovered, E. faecalis was the most common (78%). Vancomycin resistance was detected in 6% of the isolates (74% of which were E. faecium). Eleven distinct PFGE types were found among the VREfm isolates, with most belonging to sequence types 412 and 18. The ebpAEfm-ebpBEfm-ebpCEfm (pilB) and fms11-fms19-fms16 clusters were detected in all VREfm isolates from the region, whereas espEfm and hylEfm were detected in 69% and 23% of the isolates, respectively. The fms20-fms21 (pilA) cluster, which encodes a putative pilus-like protein, was found on plasmids from almost all VREfm isolates and was sometimes found to coexist with hylEfm and the vanA gene cluster. The population genetics of VREfm in South America appear to resemble those of such strains in the United States in the early years of the CC17 epidemic. The overwhelming presence of plasmids encoding putative virulence factors and vanA genes suggests that E. faecium from the CC17 genogroup may disseminate in the region in the coming years.
Insights
Vancomycin-resistant Enterococcus faecium (VREfm) from clonal cluster 17 (CC17) is spreading in South America. Virulence genes and vanA genes on plasmids suggest VREfm CC17 may become more common in the region.
Area of Science:
- Microbiology
- Infectious Diseases
- Genetics
Background:
- Enterococcus faecium is a significant nosocomial pathogen globally.
- The emergence of vancomycin-resistant E. faecium (VREfm) is a major public health concern.
- The genetic lineage clonal cluster 17 (CC17) is associated with VREfm dissemination.
Purpose of the Study:
- To investigate the prevalence and genetic characteristics of VREfm in South America.
- To identify virulence genes and plasmids associated with VREfm.
- To understand the population genetics of VREfm in the region.
Main Methods:
- Prospective collection of enterococcal isolates from hospitals in four South American countries (2006-2008).
- Antimicrobial susceptibility testing, pulsed-field gel electrophoresis (PFGE), and multilocus sequence typing (MLST) for VREfm isolates.
- Screening for 16 putative virulence genes and plasmids carrying specific gene clusters (pilA, hylEfm, vanA).
Main Results:
- VREfm constituted 74% of vancomycin-resistant enterococci, with E. faecium being the most common species overall.
- MLST identified sequence types 412 and 18 as predominant among VREfm.
- The pilB and fms11-fms19-fms16 clusters were universally present in VREfm; espEfm and hylEfm were found in 69% and 23% of isolates, respectively.
- The pilA cluster was frequently found on plasmids, sometimes coexisting with hylEfm and vanA genes.
Conclusions:
- The population genetics of South American VREfm resemble early CC17 epidemic strains in the US.
- Plasmids carrying virulence factors and vanA genes are prevalent in VREfm.
- E. faecium from the CC17 genogroup is likely to disseminate further in South America.
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