Literature DB >> 27076664

Do Staphylococcus epidermidis Genetic Clusters Predict Isolation Sources?

Isaiah Tolo1, Jonathan C Thomas2, Rebecca S B Fischer3, Eric L Brown3, Barry M Gray4, D Ashley Robinson5.   

Abstract

Staphylococcus epidermidis is a ubiquitous colonizer of human skin and a common cause of medical device-associated infections. The extent to which the population genetic structure of S. epidermidis distinguishes commensal from pathogenic isolates is unclear. Previously, Bayesian clustering of 437 multilocus sequence types (STs) in the international database revealed a population structure of six genetic clusters (GCs) that may reflect the species' ecology. Here, we first verified the presence of six GCs, including two (GC3 and GC5) with significant admixture, in an updated database of 578 STs. Next, a single nucleotide polymorphism (SNP) assay was developed that accurately assigned 545 (94%) of 578 STs to GCs. Finally, the hypothesis that GCs could distinguish isolation sources was tested by SNP typing and GC assignment of 154 isolates from hospital patients with bacteremia and those with blood culture contaminants and from nonhospital carriage. GC5 was isolated almost exclusively from hospital sources. GC1 and GC6 were isolated from all sources but were overrepresented in isolates from nonhospital and infection sources, respectively. GC2, GC3, and GC4 were relatively rare in this collection. No association was detected between fdh-positive isolates (GC2 and GC4) and nonhospital sources. Using a machine learning algorithm, GCs predicted hospital and nonhospital sources with 80% accuracy and predicted infection and contaminant sources with 45% accuracy, which was comparable to the results seen with a combination of five genetic markers (icaA, IS256, sesD [bhp], mecA, and arginine catabolic mobile element [ACME]). Thus, analysis of population structure with subgenomic data shows the distinction of hospital and nonhospital sources and the near-inseparability of sources within a hospital.
Copyright © 2016, American Society for Microbiology. All Rights Reserved.

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Year:  2016        PMID: 27076664      PMCID: PMC4922092          DOI: 10.1128/JCM.03345-15

Source DB:  PubMed          Journal:  J Clin Microbiol        ISSN: 0095-1137            Impact factor:   5.948


  42 in total

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Authors:  H Grundmann; S Hori; G Tanner
Journal:  J Clin Microbiol       Date:  2001-11       Impact factor: 5.948

2.  PCR-Based assay for discrimination between invasive and contaminating Staphylococcus epidermidis strains.

Authors:  N B Frebourg; S Lefebvre; S Baert; J F Lemeland
Journal:  J Clin Microbiol       Date:  2000-02       Impact factor: 5.948

3.  Inference of population structure using multilocus genotype data: linked loci and correlated allele frequencies.

Authors:  Daniel Falush; Matthew Stephens; Jonathan K Pritchard
Journal:  Genetics       Date:  2003-08       Impact factor: 4.562

4.  A multidrug-resistant Staphylococcus epidermidis clone (ST2) is an ongoing cause of hospital-acquired infection in a Western Australian hospital.

Authors:  Micael Widerström; Cheryll A McCullough; Geoffrey W Coombs; Tor Monsen; Keryn J Christiansen
Journal:  J Clin Microbiol       Date:  2012-03-21       Impact factor: 5.948

5.  Determining the clinical significance of coagulase-negative staphylococci isolated from blood cultures.

Authors:  Susan E Beekmann; Daniel J Diekema; Gary V Doern
Journal:  Infect Control Hosp Epidemiol       Date:  2005-06       Impact factor: 3.254

6.  Molecular analysis of coagulase-negative Staphylococcus isolates from blood cultures: prevalence of genotypic variation and polyclonal bacteremia.

Authors:  M Sharma; K Riederer; L B Johnson; R Khatib
Journal:  Clin Infect Dis       Date:  2001-09-17       Impact factor: 9.079

7.  Comparison of genotypic and phenotypic methods for species-level identification of clinical isolates of coagulase-negative staphylococci.

Authors:  E Heikens; A Fleer; A Paauw; A Florijn; A C Fluit
Journal:  J Clin Microbiol       Date:  2005-05       Impact factor: 5.948

8.  Comparative epidemiology of Staphylococcus epidermidis isolates from patients with catheter-related bacteremia and from healthy volunteers.

Authors:  S Cherifi; B Byl; A Deplano; C Nonhoff; O Denis; M Hallin
Journal:  J Clin Microbiol       Date:  2013-03-13       Impact factor: 5.948

9.  The bacterial insertion sequence element IS256 occurs preferentially in nosocomial Staphylococcus epidermidis isolates: association with biofilm formation and resistance to aminoglycosides.

Authors:  Svetlana Kozitskaya; Seung-Hak Cho; Katja Dietrich; Reinhard Marre; Kurt Naber; Wilma Ziebuhr
Journal:  Infect Immun       Date:  2004-02       Impact factor: 3.441

10.  Molecular analysis of Staphylococcus epidermidis strains isolated from community and hospital environments in China.

Authors:  Xin Du; Yuanjun Zhu; Yan Song; Tianming Li; Tao Luo; Gang Sun; Chongguang Yang; Cuiming Cao; Yuan Lu; Min Li
Journal:  PLoS One       Date:  2013-05-13       Impact factor: 3.240

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  8 in total

1.  High-Resolution Typing of Staphylococcus epidermidis Based on Core Genome Multilocus Sequence Typing To Investigate the Hospital Spread of Multidrug-Resistant Clones.

Authors:  Anne Jamet; Julien Guglielmini; Bryan Brancotte; Mathieu Coureuil; Daniel Euphrasie; Julie Meyer; Johanna Roux; Jean-Philippe Barnier; Emmanuelle Bille; Agnès Ferroni; Jean-François Magny; Christine Bôle-Feysot; Alain Charbit; Xavier Nassif; Sylvain Brisse
Journal:  J Clin Microbiol       Date:  2021-02-18       Impact factor: 5.948

2.  Significance of Staphylococcus epidermidis in Health Care-Associated Infections, from Contaminant to Clinically Relevant Pathogen: This Is a Wake-Up Call!

Authors:  Micael Widerström
Journal:  J Clin Microbiol       Date:  2016-05-11       Impact factor: 5.948

3.  Vancomycin Heteroresistance and Clinical Outcomes in Bloodstream Infections Caused by Coagulase-Negative Staphylococci.

Authors:  Jason W Rosch; Joshua Wolf; Tina H Dao; Ramzi Alsallaq; Joshua B Parsons; Jose Ferrolino; Randall T Hayden; Jeffrey E Rubnitz; Iftekhar M Rafiqullah; D Ashley Robinson; Elisa B Margolis
Journal:  Antimicrob Agents Chemother       Date:  2020-10-20       Impact factor: 5.191

4.  Versatility of Biofilm Matrix Molecules in Staphylococcus epidermidis Clinical Isolates and Importance of Polysaccharide Intercellular Adhesin Expression during High Shear Stress.

Authors:  Carolyn R Schaeffer; Tra-My N Hoang; Craig M Sudbeck; Malik Alawi; Isaiah E Tolo; D Ashley Robinson; Alexander R Horswill; Holger Rohde; Paul D Fey
Journal:  mSphere       Date:  2016-10-05       Impact factor: 4.389

5.  Significant Enrichment and Diversity of the Staphylococcal Arginine Catabolic Mobile Element ACME in Staphylococcus epidermidis Isolates From Subgingival Peri-implantitis Sites and Periodontal Pockets.

Authors:  Aoife M O'Connor; Brenda A McManus; Peter M Kinnevey; Gráinne I Brennan; Tanya E Fleming; Phillipa J Cashin; Michael O'Sullivan; Ioannis Polyzois; David C Coleman
Journal:  Front Microbiol       Date:  2018-07-12       Impact factor: 5.640

6.  Genetic Diversity of Composite Enterotoxigenic Staphylococcus epidermidis Pathogenicity Islands.

Authors:  Sylwia Banaszkiewicz; Jessica K Calland; Evangelos Mourkas; Samuel K Sheppard; Ben Pascoe; Jacek Bania
Journal:  Genome Biol Evol       Date:  2019-12-01       Impact factor: 3.416

Review 7.  Virulence Factors in Coagulase-Negative Staphylococci.

Authors:  Angela França; Vânia Gaio; Nathalie Lopes; Luís D R Melo
Journal:  Pathogens       Date:  2021-02-04

8.  Viability-Resolved Metagenomics Reveals Antagonistic Colonization Dynamics of Staphylococcus epidermidis Strains on Preterm Infant Skin.

Authors:  K Taylor Hellmann; Carly E Tuura; James Fish; Jaimin M Patel; D Ashley Robinson
Journal:  mSphere       Date:  2021-09-15       Impact factor: 4.389

  8 in total

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