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Rafael Canton - One of the best experts on this subject based on the ideXlab platform.

  • complex clonal and plasmid epidemiology in the first outbreak of Enterobacteriaceae Infection involving vim 1 metallo β lactamase in spain toward endemicity
    Clinical Infectious Diseases, 2007
    Co-Authors: Marta Tato, Teresa M Coque, P Ruczgarbajosa, Vicente Pintado, Javier Cobo, Helio S Sader, Ronald N Jones, F Baquero, Rafael Canton
    Abstract:

    BACKGROUND: We report the emergence and spread of metallo-beta-lactamases (MBLs) among enterobacterial isolates at Ramon y Cajal University Hospital (Madrid, Spain). METHODS AND RESULTS: During the period from March 2005 through September 2006, 25 patients (52% of whom were in the intensive care unit) were infected and/or colonized with single or different MBL-producing Enterobacteriaceae isolates (Klebsiella pneumoniae, 14 patients; Enterobacter cloacae, 12 patients; Escherichia coli, 1 patient; and/or Klebsiella oxytoca, 1 patient). Clonal analysis (XbaI pulsed-field gel electrophoresis) revealed that all K. pneumoniae isolates belonged to the same clone, but 6 patterns were found among the E. cloacae isolates. Carbapenems were affected to different degrees (minimum inhibitory concentration, 8 microg/mL), as were aminoglycosides and ciprofloxacin. The bla(VIM-1) MBL gene was present in all isolates; in addition, the bla(SHV-12) extended-spectrum beta-lactamase gene was detected in K. pneumoniae and E. coli isolates. The bla(VIM-1) gene was detected within a 4.0-kb class 1 integron (bla(VIM-1)-aacA4-dfrII-aadA1-catB2) in K. pneumoniae and E. coli and in a 2.5-kb class 1 integron (bla(VIM-1)-aacA4-aadA1) in E. cloacae and K. oxytoca isolates. The bla(VIM-1) gene was transferable (filter-mating) in 14 of 14 K. pneumoniae isolates, 4 of 11 E. cloacae isolates, and 1 of 1 E. coli isolate. A 60-kb plasmid belonging to the IncI1 group was detected in the epidemic VIM-1-K. pneumoniae clone. Plasmids of 300- or 435-kb belonging to IncH12 group were found among E. cloacae isolates. CONCLUSIONS: K. pneumoniae-MBL monoclonal epidemics coexisted with E. cloacae-MBL multiclonal epidemics in our hospital. The spread of the bla(VIM-1) gene among Enterobacteriaceae was driven by clonal spread associated with intergeneric plasmid transfer with different class I integron platforms. Such complex epidemiology might anticipate endemicity and should be considered for the design of containment epidemiology strategies.

  • complex clonal and plasmid epidemiology in the first outbreak of Enterobacteriaceae Infection involving vim 1 metallo β lactamase in spain toward endemicity
    Clinical Infectious Diseases, 2007
    Co-Authors: Marta Tato, Teresa M Coque, P Ruczgarbajosa, Vicente Pintado, Javier Cobo, Helio S Sader, Ronald N Jones, F Baquero, Rafael Canton
    Abstract:

    Background We report the emergence and spread of metallo-beta-lactamases (MBLs) among enterobacterial isolates at Ramon y Cajal University Hospital (Madrid, Spain). Methods and results During the period from March 2005 through September 2006, 25 patients (52% of whom were in the intensive care unit) were infected and/or colonized with single or different MBL-producing Enterobacteriaceae isolates (Klebsiella pneumoniae, 14 patients; Enterobacter cloacae, 12 patients; Escherichia coli, 1 patient; and/or Klebsiella oxytoca, 1 patient). Clonal analysis (XbaI pulsed-field gel electrophoresis) revealed that all K. pneumoniae isolates belonged to the same clone, but 6 patterns were found among the E. cloacae isolates. Carbapenems were affected to different degrees (minimum inhibitory concentration, 8 microg/mL), as were aminoglycosides and ciprofloxacin. The bla(VIM-1) MBL gene was present in all isolates; in addition, the bla(SHV-12) extended-spectrum beta-lactamase gene was detected in K. pneumoniae and E. coli isolates. The bla(VIM-1) gene was detected within a 4.0-kb class 1 integron (bla(VIM-1)-aacA4-dfrII-aadA1-catB2) in K. pneumoniae and E. coli and in a 2.5-kb class 1 integron (bla(VIM-1)-aacA4-aadA1) in E. cloacae and K. oxytoca isolates. The bla(VIM-1) gene was transferable (filter-mating) in 14 of 14 K. pneumoniae isolates, 4 of 11 E. cloacae isolates, and 1 of 1 E. coli isolate. A 60-kb plasmid belonging to the IncI1 group was detected in the epidemic VIM-1-K. pneumoniae clone. Plasmids of 300- or 435-kb belonging to IncH12 group were found among E. cloacae isolates. Conclusions K. pneumoniae-MBL monoclonal epidemics coexisted with E. cloacae-MBL multiclonal epidemics in our hospital. The spread of the bla(VIM-1) gene among Enterobacteriaceae was driven by clonal spread associated with intergeneric plasmid transfer with different class I integron platforms. Such complex epidemiology might anticipate endemicity and should be considered for the design of containment epidemiology strategies.

James R Johnson - One of the best experts on this subject based on the ideXlab platform.

  • despite predominance of uropathogenic extraintestinal pathotypes among travel acquired extended spectrum β lactamase producing escherichia coli the most commonly associated clinical manifestation is travelers diarrhea
    Clinical Infectious Diseases, 2020
    Co-Authors: Anu Kantele, Tinja Laaveri, Sointu Mero, Inka M K Hakkinen, Juha Kirveskari, Brian D Johnston, James R Johnson
    Abstract:

    Background One-third of the 100 million travelers to the tropics annually acquire extended-spectrum β-lactamase (ESBL)-producing Enterobacteriaceae (ESBL-PE), with undefined clinical consequences. Methods Symptoms suggesting Enterobacteriaceae Infections were recorded prospectively among 430 Finnish travelers, 90 (21%) of whom acquired ESBL-PE abroad. ESBL-PE isolates underwent polymerase chain reaction-based detection of diarrheagenic Escherichia coli (DEC) pathotypes (enteroaggregative E. coli [EAEC], enteropathogenic E. coli [EPEC], enterotoxigenic E. coli [ETEC], enteroinvasive E. coli, and Shiga toxin-producing E. coli), and extraintestinal pathogenic/uropathogenic E. coli (ExPEC/UPEC). Laboratory-confirmed ESBL-PE Infections were surveyed 5 years before and after travel. Results Among the 90 ESBL-PE carriers, manifestations of Enterobacteriaceae Infection included travelers' diarrhea (TD) (75/90 subjects) and urinary tract Infection (UTI) (3/90). The carriers had 96 ESBL-producing E. coli isolates, 51% exhibiting a molecular pathotype: 13 (14%) were DEC (10 EAEC, 2 EPEC, 1 ETEC) (12 associated with TD) and 39 (41%) ExPEC/UPEC (none associated with UTI). Of ESBL-PE, 3 (3%) were ExPEC/UPEC-EAEC hybrids (2 associated with diarrhea, none with UTI). Potential ESBL-PE Infections were detected in 15 of 90 subjects (17%). The 10-year medical record survey identified 4 laboratory-confirmed ESBL-PE Infections among the 430 travelers, all in subjects who screened ESBL-PE negative after returning home from their index journeys but had traveled abroad before their Infection episodes. Conclusions Half of all travel-acquired ESBL-producing E. coli strains qualified molecularly as pathogens. Extraintestinal and uropathogenic pathotypes outnumbered enteric pathotypes (41% vs 14%), yet the latter correlated more closely with symptomatic Infection (0% vs 92%). Despite more ESBL-PE strains qualifying as ExPEC/UPEC than DEC, travel-acquired ESBL-PE are more often associated with TD than UTI.

Marta Tato - One of the best experts on this subject based on the ideXlab platform.

  • complex clonal and plasmid epidemiology in the first outbreak of Enterobacteriaceae Infection involving vim 1 metallo β lactamase in spain toward endemicity
    Clinical Infectious Diseases, 2007
    Co-Authors: Marta Tato, Teresa M Coque, P Ruczgarbajosa, Vicente Pintado, Javier Cobo, Helio S Sader, Ronald N Jones, F Baquero, Rafael Canton
    Abstract:

    BACKGROUND: We report the emergence and spread of metallo-beta-lactamases (MBLs) among enterobacterial isolates at Ramon y Cajal University Hospital (Madrid, Spain). METHODS AND RESULTS: During the period from March 2005 through September 2006, 25 patients (52% of whom were in the intensive care unit) were infected and/or colonized with single or different MBL-producing Enterobacteriaceae isolates (Klebsiella pneumoniae, 14 patients; Enterobacter cloacae, 12 patients; Escherichia coli, 1 patient; and/or Klebsiella oxytoca, 1 patient). Clonal analysis (XbaI pulsed-field gel electrophoresis) revealed that all K. pneumoniae isolates belonged to the same clone, but 6 patterns were found among the E. cloacae isolates. Carbapenems were affected to different degrees (minimum inhibitory concentration, 8 microg/mL), as were aminoglycosides and ciprofloxacin. The bla(VIM-1) MBL gene was present in all isolates; in addition, the bla(SHV-12) extended-spectrum beta-lactamase gene was detected in K. pneumoniae and E. coli isolates. The bla(VIM-1) gene was detected within a 4.0-kb class 1 integron (bla(VIM-1)-aacA4-dfrII-aadA1-catB2) in K. pneumoniae and E. coli and in a 2.5-kb class 1 integron (bla(VIM-1)-aacA4-aadA1) in E. cloacae and K. oxytoca isolates. The bla(VIM-1) gene was transferable (filter-mating) in 14 of 14 K. pneumoniae isolates, 4 of 11 E. cloacae isolates, and 1 of 1 E. coli isolate. A 60-kb plasmid belonging to the IncI1 group was detected in the epidemic VIM-1-K. pneumoniae clone. Plasmids of 300- or 435-kb belonging to IncH12 group were found among E. cloacae isolates. CONCLUSIONS: K. pneumoniae-MBL monoclonal epidemics coexisted with E. cloacae-MBL multiclonal epidemics in our hospital. The spread of the bla(VIM-1) gene among Enterobacteriaceae was driven by clonal spread associated with intergeneric plasmid transfer with different class I integron platforms. Such complex epidemiology might anticipate endemicity and should be considered for the design of containment epidemiology strategies.

  • complex clonal and plasmid epidemiology in the first outbreak of Enterobacteriaceae Infection involving vim 1 metallo β lactamase in spain toward endemicity
    Clinical Infectious Diseases, 2007
    Co-Authors: Marta Tato, Teresa M Coque, P Ruczgarbajosa, Vicente Pintado, Javier Cobo, Helio S Sader, Ronald N Jones, F Baquero, Rafael Canton
    Abstract:

    Background We report the emergence and spread of metallo-beta-lactamases (MBLs) among enterobacterial isolates at Ramon y Cajal University Hospital (Madrid, Spain). Methods and results During the period from March 2005 through September 2006, 25 patients (52% of whom were in the intensive care unit) were infected and/or colonized with single or different MBL-producing Enterobacteriaceae isolates (Klebsiella pneumoniae, 14 patients; Enterobacter cloacae, 12 patients; Escherichia coli, 1 patient; and/or Klebsiella oxytoca, 1 patient). Clonal analysis (XbaI pulsed-field gel electrophoresis) revealed that all K. pneumoniae isolates belonged to the same clone, but 6 patterns were found among the E. cloacae isolates. Carbapenems were affected to different degrees (minimum inhibitory concentration, 8 microg/mL), as were aminoglycosides and ciprofloxacin. The bla(VIM-1) MBL gene was present in all isolates; in addition, the bla(SHV-12) extended-spectrum beta-lactamase gene was detected in K. pneumoniae and E. coli isolates. The bla(VIM-1) gene was detected within a 4.0-kb class 1 integron (bla(VIM-1)-aacA4-dfrII-aadA1-catB2) in K. pneumoniae and E. coli and in a 2.5-kb class 1 integron (bla(VIM-1)-aacA4-aadA1) in E. cloacae and K. oxytoca isolates. The bla(VIM-1) gene was transferable (filter-mating) in 14 of 14 K. pneumoniae isolates, 4 of 11 E. cloacae isolates, and 1 of 1 E. coli isolate. A 60-kb plasmid belonging to the IncI1 group was detected in the epidemic VIM-1-K. pneumoniae clone. Plasmids of 300- or 435-kb belonging to IncH12 group were found among E. cloacae isolates. Conclusions K. pneumoniae-MBL monoclonal epidemics coexisted with E. cloacae-MBL multiclonal epidemics in our hospital. The spread of the bla(VIM-1) gene among Enterobacteriaceae was driven by clonal spread associated with intergeneric plasmid transfer with different class I integron platforms. Such complex epidemiology might anticipate endemicity and should be considered for the design of containment epidemiology strategies.

Anu Kantele - One of the best experts on this subject based on the ideXlab platform.

  • despite predominance of uropathogenic extraintestinal pathotypes among travel acquired extended spectrum β lactamase producing escherichia coli the most commonly associated clinical manifestation is travelers diarrhea
    Clinical Infectious Diseases, 2020
    Co-Authors: Anu Kantele, Tinja Laaveri, Sointu Mero, Inka M K Hakkinen, Juha Kirveskari, Brian D Johnston, James R Johnson
    Abstract:

    Background One-third of the 100 million travelers to the tropics annually acquire extended-spectrum β-lactamase (ESBL)-producing Enterobacteriaceae (ESBL-PE), with undefined clinical consequences. Methods Symptoms suggesting Enterobacteriaceae Infections were recorded prospectively among 430 Finnish travelers, 90 (21%) of whom acquired ESBL-PE abroad. ESBL-PE isolates underwent polymerase chain reaction-based detection of diarrheagenic Escherichia coli (DEC) pathotypes (enteroaggregative E. coli [EAEC], enteropathogenic E. coli [EPEC], enterotoxigenic E. coli [ETEC], enteroinvasive E. coli, and Shiga toxin-producing E. coli), and extraintestinal pathogenic/uropathogenic E. coli (ExPEC/UPEC). Laboratory-confirmed ESBL-PE Infections were surveyed 5 years before and after travel. Results Among the 90 ESBL-PE carriers, manifestations of Enterobacteriaceae Infection included travelers' diarrhea (TD) (75/90 subjects) and urinary tract Infection (UTI) (3/90). The carriers had 96 ESBL-producing E. coli isolates, 51% exhibiting a molecular pathotype: 13 (14%) were DEC (10 EAEC, 2 EPEC, 1 ETEC) (12 associated with TD) and 39 (41%) ExPEC/UPEC (none associated with UTI). Of ESBL-PE, 3 (3%) were ExPEC/UPEC-EAEC hybrids (2 associated with diarrhea, none with UTI). Potential ESBL-PE Infections were detected in 15 of 90 subjects (17%). The 10-year medical record survey identified 4 laboratory-confirmed ESBL-PE Infections among the 430 travelers, all in subjects who screened ESBL-PE negative after returning home from their index journeys but had traveled abroad before their Infection episodes. Conclusions Half of all travel-acquired ESBL-producing E. coli strains qualified molecularly as pathogens. Extraintestinal and uropathogenic pathotypes outnumbered enteric pathotypes (41% vs 14%), yet the latter correlated more closely with symptomatic Infection (0% vs 92%). Despite more ESBL-PE strains qualifying as ExPEC/UPEC than DEC, travel-acquired ESBL-PE are more often associated with TD than UTI.

P Ruczgarbajosa - One of the best experts on this subject based on the ideXlab platform.

  • complex clonal and plasmid epidemiology in the first outbreak of Enterobacteriaceae Infection involving vim 1 metallo β lactamase in spain toward endemicity
    Clinical Infectious Diseases, 2007
    Co-Authors: Marta Tato, Teresa M Coque, P Ruczgarbajosa, Vicente Pintado, Javier Cobo, Helio S Sader, Ronald N Jones, F Baquero, Rafael Canton
    Abstract:

    BACKGROUND: We report the emergence and spread of metallo-beta-lactamases (MBLs) among enterobacterial isolates at Ramon y Cajal University Hospital (Madrid, Spain). METHODS AND RESULTS: During the period from March 2005 through September 2006, 25 patients (52% of whom were in the intensive care unit) were infected and/or colonized with single or different MBL-producing Enterobacteriaceae isolates (Klebsiella pneumoniae, 14 patients; Enterobacter cloacae, 12 patients; Escherichia coli, 1 patient; and/or Klebsiella oxytoca, 1 patient). Clonal analysis (XbaI pulsed-field gel electrophoresis) revealed that all K. pneumoniae isolates belonged to the same clone, but 6 patterns were found among the E. cloacae isolates. Carbapenems were affected to different degrees (minimum inhibitory concentration, 8 microg/mL), as were aminoglycosides and ciprofloxacin. The bla(VIM-1) MBL gene was present in all isolates; in addition, the bla(SHV-12) extended-spectrum beta-lactamase gene was detected in K. pneumoniae and E. coli isolates. The bla(VIM-1) gene was detected within a 4.0-kb class 1 integron (bla(VIM-1)-aacA4-dfrII-aadA1-catB2) in K. pneumoniae and E. coli and in a 2.5-kb class 1 integron (bla(VIM-1)-aacA4-aadA1) in E. cloacae and K. oxytoca isolates. The bla(VIM-1) gene was transferable (filter-mating) in 14 of 14 K. pneumoniae isolates, 4 of 11 E. cloacae isolates, and 1 of 1 E. coli isolate. A 60-kb plasmid belonging to the IncI1 group was detected in the epidemic VIM-1-K. pneumoniae clone. Plasmids of 300- or 435-kb belonging to IncH12 group were found among E. cloacae isolates. CONCLUSIONS: K. pneumoniae-MBL monoclonal epidemics coexisted with E. cloacae-MBL multiclonal epidemics in our hospital. The spread of the bla(VIM-1) gene among Enterobacteriaceae was driven by clonal spread associated with intergeneric plasmid transfer with different class I integron platforms. Such complex epidemiology might anticipate endemicity and should be considered for the design of containment epidemiology strategies.

  • complex clonal and plasmid epidemiology in the first outbreak of Enterobacteriaceae Infection involving vim 1 metallo β lactamase in spain toward endemicity
    Clinical Infectious Diseases, 2007
    Co-Authors: Marta Tato, Teresa M Coque, P Ruczgarbajosa, Vicente Pintado, Javier Cobo, Helio S Sader, Ronald N Jones, F Baquero, Rafael Canton
    Abstract:

    Background We report the emergence and spread of metallo-beta-lactamases (MBLs) among enterobacterial isolates at Ramon y Cajal University Hospital (Madrid, Spain). Methods and results During the period from March 2005 through September 2006, 25 patients (52% of whom were in the intensive care unit) were infected and/or colonized with single or different MBL-producing Enterobacteriaceae isolates (Klebsiella pneumoniae, 14 patients; Enterobacter cloacae, 12 patients; Escherichia coli, 1 patient; and/or Klebsiella oxytoca, 1 patient). Clonal analysis (XbaI pulsed-field gel electrophoresis) revealed that all K. pneumoniae isolates belonged to the same clone, but 6 patterns were found among the E. cloacae isolates. Carbapenems were affected to different degrees (minimum inhibitory concentration, 8 microg/mL), as were aminoglycosides and ciprofloxacin. The bla(VIM-1) MBL gene was present in all isolates; in addition, the bla(SHV-12) extended-spectrum beta-lactamase gene was detected in K. pneumoniae and E. coli isolates. The bla(VIM-1) gene was detected within a 4.0-kb class 1 integron (bla(VIM-1)-aacA4-dfrII-aadA1-catB2) in K. pneumoniae and E. coli and in a 2.5-kb class 1 integron (bla(VIM-1)-aacA4-aadA1) in E. cloacae and K. oxytoca isolates. The bla(VIM-1) gene was transferable (filter-mating) in 14 of 14 K. pneumoniae isolates, 4 of 11 E. cloacae isolates, and 1 of 1 E. coli isolate. A 60-kb plasmid belonging to the IncI1 group was detected in the epidemic VIM-1-K. pneumoniae clone. Plasmids of 300- or 435-kb belonging to IncH12 group were found among E. cloacae isolates. Conclusions K. pneumoniae-MBL monoclonal epidemics coexisted with E. cloacae-MBL multiclonal epidemics in our hospital. The spread of the bla(VIM-1) gene among Enterobacteriaceae was driven by clonal spread associated with intergeneric plasmid transfer with different class I integron platforms. Such complex epidemiology might anticipate endemicity and should be considered for the design of containment epidemiology strategies.