Literature DB >> 16547573

Genetic diversity and antimicrobial resistance of enterococcal isolates from Southern region of Brazil.

Pedro Alves d'Azevedo1, Cícero Armídio Gomes Dias, Lúcia Martins Teixeira.   

Abstract

In the present study, a total of 455 enterococcal isolates, recovered from patients living in the city of Porto Alegre, State of Rio Grande do Sul, Brazil, during the period from July 1996 to June 1997, were identified to the species level by conventional biochemical and microbiological tests, and assayed for their susceptibilities to antimicrobial agents. The genetic diversity of antimicrobial resistant strains was evaluated by pulsed-field gel electrophoresis (PFGE) analysis of SmaI restricted chromosomal DNA. The most frequent species was Enterococcus faecalis (92.8%). Other species identified were: E. faecium (2.9%), E. gallinarum (1.5%), E. avium (1.1%), E. hirae (0.7%), E. casseliflavus (0.4%), E. durans (0.4%) and E. raffinosus (0.2%). The overall prevalence of isolates with high-level resistance (HLR) to aminoglycosides was 37.8%. HLR to gentamicin was found in 24.8%. No strains with acquired resistance to vancomycin were found. PFGE analysis showed the predominance of clonal group A, comprising strains isolated from different clinical specimens obtained from patients in three hospitals. These results suggest intra and inter-hospital dissemination of one predominant clonal group of E. faecalis isolates with HLR to gentamicin in the hospitals included in this study.

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Year:  2006        PMID: 16547573     DOI: 10.1590/s0036-46652006000100003

Source DB:  PubMed          Journal:  Rev Inst Med Trop Sao Paulo        ISSN: 0036-4665            Impact factor:   1.846


  9 in total

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2.  Correlation between biofilm formation and gelE, esp, and agg genes in Enterococcus spp. clinical isolates.

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9.  Molecular detection of virulence factors among food and clinical Enterococcus faecalis strains in South Brazil.

Authors:  A W Medeiros; R I Pereira; D V Oliveira; P D Martins; P A d'Azevedo; S Van der Sand; J Frazzon; A P G Frazzon
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  9 in total

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