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Published on: February 19, 2019
Virulence factors among Staphylococcus lugdunensis are associated with infection sites and clonal spread
N Giormezis1, F Kolonitsiou, A Makri
1Department of Microbiology, School of Medicine, University of Patras, 26504, Rion, Patras, Greece.
Abstract:
Staphylococcus lugdunensis has emerged as a significant human pathogen, with distinct clinical and microbiological characteristics. Our goal was to identify the virulence factors in S. lugdunensis recovered from infected patients of two Greek hospitals during a six-year period (2008-2013). A collection of 38 S. lugdunensis was tested for biofilm formation, antimicrobial susceptibility, clonal distribution, virulence factors (ica operon, fbl, atlL, vwbl, slush) and antibiotic resistance genes (mecA, ermC) carriage. Strains were classified into pulsotypes by pulsed-field gel electrophoresis (PFGE) of SmaI DNA digests. The majority (22) was isolated from skin and soft tissue infections (SSTIs), nine from deep-sited infections (DSIs), including three bacteraemias and seven from prosthetic device-associated infections (PDAIs). All isolates were oxacillin-susceptible, mecA-negative and fbl-positive. The highest resistance rate was detected for ampicillin (50%), followed by erythromycin and clindamycin (18.4%). Fourteen isolates (36.8%) produced biofilm, whereas 26/38 (68.4%) carried the ica operon. Biofilm formation was more frequent in isolates from PDAIs. Thirty-six strains (94.7%) carried atlL and 31 (81.6%) carried vwbl, whereas slush was detected in 15 (39.5%). PFGE revealed a low level of genetic diversity: strains were classified into seven pulsotypes, with two major clones (C: 22 and D: nine strains). Type C strains recovered from all infection sites prevailed in biofilm formation and ermC carriage, whereas type D strains associated with SSTIs and DSIs carried more frequently vwbl, slush or both genes. Despite susceptibility to antimicrobials, the clonal expansion and carriage of virulence factors, combined with biofilm-producing ability, render this species an important pathogen that should not be ignored.
Insights
Staphylococcus lugdunensis is a growing pathogen. This study identified key virulence factors and genetic traits in strains from Greek hospitals, highlighting their potential for causing infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Genetics
Background:
- Staphylococcus lugdunensis is increasingly recognized as a significant human pathogen.
- Understanding its virulence factors is crucial for managing infections.
Purpose of the Study:
- To identify virulence factors and genetic characteristics of S. lugdunensis from infected patients in Greece.
- To analyze antimicrobial susceptibility, biofilm formation, and clonal distribution.
Main Methods:
- Collected 38 S. lugdunensis strains from Greek hospitals (2008-2013).
- Assessed biofilm formation, antimicrobial susceptibility, and virulence genes (ica operon, fbl, atlL, vwbl, slush).
- Determined clonal types using pulsed-field gel electrophoresis (PFGE).
Main Results:
- All isolates were oxacillin-susceptible and mecA-negative, but fbl-positive.
- Ampicillin resistance was highest (50%), followed by erythromycin and clindamycin (18.4%).
- Biofilm formation (36.8%) was more common in prosthetic device-associated infections (PDAIs); 68.4% carried the ica operon.
Conclusions:
- S. lugdunensis possesses significant virulence factors and biofilm-producing capacity.
- Clonal expansion and specific virulence gene combinations contribute to its pathogenicity.
- Despite antimicrobial susceptibility, S. lugdunensis warrants attention as an important pathogen.
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