Journal of Clinical Microbiology · 2010 · 15 citations · 20 references
Microbial PathogensProlonged AplasiaImmunologyImmunocompromised PatientAntibiotic ResistanceBacterial PathogensDrug ResistanceMedical MicrobiologyBiofilm FormationHealthcare-associated InfectionInfection ControlAntimicrobial ResistanceHealth SciencesOxacillin ResistancePathogen CharacterizationClinical MicrobiologyAntimicrobial Resistance GeneHospital InfectionsAntimicrobial SusceptibilityAntibioticsLeukemic PatientPathogenesisMicrobiologyMedicine
We report on a leukemic patient who suffered from a persistent, generalized, and eventually fatal Staphylococcus epidermidis infection during prolonged aplasia. Over a 6-week period, we isolated a genetically and phenotypically unstable S. epidermidis strain related to an epidemic clone associated with hospital infections worldwide. Strikingly, the strain showed a remarkable degree of variability, with evidence of selection and increasing predominance of biofilm-producing and oxacillin-resistant variants over time. Thus, in the early stages of the infection, the strain was found to generate subpopulations which had spontaneously lost the biofilm-mediating ica locus along with the oxacillin resistance-conferring mecA gene. These deletion mutants were obviously outcompeted by the ica- and mecA-positive wild-type genotype, with the selection and predominance of strongly biofilm-forming and oxacillin-resistant variants in the later stages of the infection. Also, a switch from protein- to polysaccharide intercellular adhesin/poly-N-acetylglucosamine (PIA/PNAG)-mediated-biofilm production was detected among ica-positive variants in the course of the infection. The data highlight the impact of distinct S. epidermidis clonal lineages as serious nosocomial pathogens that, through the generation and selection of highly pathogenic variants, may critically determine disease progression and outcome.
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Catarina Milheiriço, Duarte C. Oliveira, Hermı́nia de Lencastre · Antimicrobial Agents and Chemotherapy · 2007 · 496 citations · Full text
Wilma Ziebuhr, Vanessa Krimmer, Shwan Rachid et al. · Molecular Microbiology · 1999 · 406 citations · Full text