Publications by authors named "Rosa M Bartolome"

Article Synopsis
  • A previous study identified OXA-1 and inhibitor-resistant TEM β-lactamases as major mechanisms of amoxicillin-clavulanate resistance in E. coli in Spain.
  • The current research analyzed the genetic and virulence characteristics of clinical AMC-resistant E. coli strains compared to AMC-susceptible strains, revealing different prevalent clones for each resistance group.
  • Results indicated that AMC-susceptible E. coli had a more diverse population structure and higher virulence factor presence compared to OXA-1 and IRT producers.
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Two hundred twelve patients with colonization/infection due to amoxicillin-clavulanate (AMC)-resistant Escherichia coli were studied. OXA-1- and inhibitor-resistant TEM (IRT)-producing strains were associated with urinary tract infections, while OXA-1 producers and chromosomal AmpC hyperproducers were associated with bacteremic infections. AMC resistance in E.

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Prospective hospital-based surveillance for Clostridium difficile-associated disease (CDAD) was conducted in Barcelona (Spain) to describe the epidemiology of this condition and investigate the risk factors for an unfavorable outcome. All patients diagnosed with CDAD during 2009 were included. Using logistic regression modeling, we analyzed the potential risk factors associated with recurrent and complicated CDAD, defined as a need for colectomy or death within 30 days.

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We conducted a prospective multicenter study in Spain to characterize the mechanisms of resistance to amoxicillin-clavulanate (AMC) in Escherichia coli. Up to 44 AMC-resistant E. coli isolates (MIC ≥ 32/16 μg/ml) were collected at each of the seven participant hospitals.

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The localisation and genetic organisation of bla(CTX-M-15) were studied in 37 CTX-M-15-producing Klebsiella pneumoniae isolates collected from 2005 to 2008 within the Barcelona metropolitan area. Polymerase chain reaction (PCR)-based replicon typing and Southern hybridisations were used to identify the bla(CTX-M-15) location. The genetic environment was analysed by PCR mapping and sequencing, and transferability of bla(CTX-M-15) was evaluated by conjugation and transformation assays.

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