Molecular Characterization of Acinetobacter Isolates Collected in Intensive Care Units of Six Hospitals in Florence, Italy, during a 3-Year Surveillance Program: a Population Structure Analysis

Author:

Donnarumma Francesca1,Sergi Simona1,Indorato Cristina1,Mastromei Giorgio1,Monnanni Roberto1,Nicoletti Pieluigi2,Pecile Patrizia2,Cecconi Daniela2,Mannino Roberta2,Bencini Sara3,Fanci Rosa3,Bosi Alberto3,Casalone Enrico1

Affiliation:

1. CIBIACI and Department of Evolutionary Biology, University of Florence, Florence, Italy

2. Laboratory of Microbiology, Careggi Hospital, Florence, Italy

3. Stem Cell Transplantation Unit, Department of Haematology, Careggi Hospital, University of Florence, Florence, Italy

Abstract

ABSTRACT The strain diversity and the population structure of nosocomial Acinetobacter isolated from patients admitted to different hospitals in Florence, Italy, during a 3-year surveillance program, were investigated by amplified fragment length polymorphism (AFLP). The majority of isolates (84.5%) were identified as A. baumannii , confirming this species as the most common hospital Acinetobacter . Three very distinct A. baumannii clonal groups (A1, A2, and A3) were defined. The A1 isolates appeared to be genetically related to the well-characterized European EU II clone. A2 was responsible for three outbreaks which occurred in two intensive care units. Space/time population dynamic analysis showed that A1 and A2 were successful nosocomial clones. Most of the A. baumannnii isolates were imipenem resistant. The genetic determinants of carbapenem resistance were investigated by multiplex PCR, showing that resistance, independently of hospital origin, period of isolation, or clonal group, was associated with the presence of a bla OXA-58-like gene and with IS Aba2 and IS Aba3 elements flanking this gene. bla OXA-58 appeared to be horizontally transferred. This study showed that the high discriminatory power of AFLP is useful for identification and typing of nosocomial Acinetobacter isolates. Moreover the use of AFLP in a real-time surveillance program allowed us the recognition of clinically relevant and widespread clones and their monitoring in hospital settings. The correlation between clone diffusion, imipenem resistance, and the presence of the bla OXA-58-like gene is discussed.

Publisher

American Society for Microbiology

Subject

Microbiology (medical)

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