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      Evolución de la resistencia antimicrobiana de bacilos Gram negativos en unidades de cuidados intensivos en Colombia Translated title: Evolution of antimicrobial resistance in Gram negative bacilli from intensive care units in Colombia

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          Abstract

          Introducción. La evolución de la resistencia bacteriana constituye una amenaza para la salud pública mundial. Los sistemas de vigilancia epidemiológica han integrado técnicas de biología molecular para mejorar las estrategias de control. Objetivo. Describir los perfiles moleculares y fenotípicos de los bacilos Gram negativos en unidades de cuidados intensivos de 23 hospitales de Colombia entre 2009 y 2012. Materiales y métodos. Se diseñó un estudio descriptivo en 23 hospitales del Grupo para el Estudio de la Resistencia Nosocomial (sic.) en Colombia. Se analizaron 38.048 aislamientos usando WHONET durante el periodo descrito. Se describieron perfiles de resistencia para Escherichia coli , Klebsiella pneumoniae , Pseudomonas aeruginosa y Acinetobacter baumannii. En 1.248 cepas se realizó reacción en cadena de la polimerasa (PCR) para detectar las carbapenemasas clínicamente más relevantes. Resultados. Escherichia coli fue el microorganismo más frecuente (promedio=14,8 %); la frecuencia de aislamientos de K. pneumoniae aumentó de 11 % en 2009 a 15 % en 2012 (p<0,001). La tendencia de los perfiles de multirresistencia aumentó en todas las especies estudiadas. De los aislamientos de K. pneumoniae evaluados, 68,4 % fue positivo para KPC ( Klebsiella pneumoniae Carbapenemase ), mientras que la VIM ( Verona Integron-encoded Metallo-betalactamase ) en P. aeruginosa se observó en 46,5 %. Conclusiones. Se observó un incremento en la tendencia de los microorganismos hacia la multirresistencia y una amplia distribución de las carbapenemasas. La articulación de la biología molecular con los sistemas de vigilancia permitió integrar el análisis del fenotipo con los mecanismos de resistencia involucrados en las bacterias estudiadas. Este análisis permitirá la elaboración de guías para el uso adecuado de antimicrobianos y contribuirá a la contención de estas bacterias multirresistentes en Colombia.

          Translated abstract

          Introduction: The continuous evolution of antimicrobial resistance poses a major threat to public health worldwide. Molecular biology techniques have been integrated to epidemiological surveillance systems to improve the control strategies of this phenomenon. Objective: To describe the phenotypic and molecular profiles of the most important Gram negative bacilli from intensive care units in 23 Colombian hospitals during the study period 2009-2012. Materials and methods: A descriptive study was conducted in 23 hospitals belonging to the Colombian Nosocomial Resistance Study Group. A total of 38.048 bacterial isolates were analyzed using WHONET over a four-year period. The antimicrobial resistant profiles were described for Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, and Acinetobacter baumannii . Polymerase chain reaction was performed in 1.248 strains to detect the most clinically relevant carbapenemases. Results: Escherichia coli was the most frequently isolated organism (mean=14.8%). Frequency of K. pneumoniae increased significantly from 11% in 2009 to 15% in 2012 (p<0.001). All screened isolates had rising trends of multidrug-resistant profiles. KPC ( Klebsiella pneumoniae carbapenemase) was detected in 68.4% of K. pneumoniae isolates while VIM (Verona integron-encoded metallo-betalactamase) was present in 46.5% of them. Conclusion: In this study, an increase in the trend of multidrug-resistant organisms and a wide distribution of carbapenemases was observed. The integration of molecular biology to surveillance systems allowed the compilation of this data, which will aid in the construction of guidelines on antimicrobial stewardship for prevention in Colombia.

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          Resistance in gram-negative bacteria: enterobacteriaceae.

          The emergence and spread of resistance in Enterobacteriaceae are complicating the treatment of serious nosocomial infections and threatening to create species resistant to all currently available agents. Approximately 20% of Klebsiella pneumoniae infections and 31% of Enterobacter spp infections in intensive care units in the United States now involve strains not susceptible to third-generation cephalosporins. Such resistance in K pneumoniae to third-generation cephalosporins is typically caused by the acquisition of plasmids containing genes that encode for extended-spectrum beta-lactamases (ESBLs), and these plasmids often carry other resistance genes as well. ESBL-producing K pneumoniae and Escherichia coli are now relatively common in healthcare settings and often exhibit multidrug resistance. ESBL-producing Enterobacteriaceae have now emerged in the community as well. Salmonella and other Enterobacteriaceae that cause gastroenteritis may also be ESBL producers, which is of relevance when children require treatment for invasive infections. Resistance of Enterobacter spp to third-generation cephalosporins is most typically caused by overproduction of AmpC beta-lactamases, and treatment with third-generation cephalosporins may select for AmpC-overproducing mutants. Some Enterobacter cloacae strains are now ESBL and AmpC producers, conferring resistance to both third- and fourth-generation cephalosporins. Quinolone resistance in Enterobacteriaceae is usually the result of chromosomal mutations leading to alterations in target enzymes or drug accumulation. More recently, however, plasmid-mediated quinolone resistance has been reported in K pneumoniae and E coli, associated with acquisition of the qnr gene. The vast majority of Enterobacteriaceae, including ESBL producers, remain susceptible to carbapenems, and these agents are considered preferred empiric therapy for serious Enterobacteriaceae infections. Carbapenem resistance, although rare, appears to be increasing. Particularly troublesome is the emergence of KPC-type carbapenemases in New York City. Better antibiotic stewardship and infection control are needed to prevent further spread of ESBLs and other forms of resistance in Enterobacteriaceae throughout the world.
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            First identification of Pseudomonas aeruginosa isolates producing a KPC-type carbapenem-hydrolyzing beta-lactamase.

            In Medellin, Colombia, three Pseudomonas aeruginosa isolates with high-level carbapenem resistance (MIC>or=256 microg/ml) and an isolate of Citrobacter freundii with reduced susceptibility to imipenem produced the plasmid-mediated class A carbapenemase KPC-2. This is the first report of a KPC-type beta-lactamase identified outside of the family Enterobacteriaceae.
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              Antimicrobial use, incidence, etiology and resistance patterns in bacteria causing ventilator-associated pneumonia in a clinical-surgical intensive care unit

              INTRODUCTION : Antimicrobial resistance is an increasing threat in hospitalized patients, and inappropriate empirical antimicrobial therapy is known to adversely affect outcomes in ventilator-associated pneumonia (VAP). The aim of this study was to evaluate antimicrobial usage, incidence, etiology, and antimicrobial resistance trends for prominent nosocomial pathogens causing ventilator-associated pneumonia in a clinical-surgical intensive care unit (ICU). METHODS : Gram-negative bacilli and Staphylococcus aureus causing VAP, as well as their antimicrobial resistance patterns and data on consumption (defined daily dose [DDD] per 1,000 patient days) of glycopeptides, extended-spectrum cephalosporins, and carbapenems in the unit were evaluated in two different periods (A and B). RESULTS: Antimicrobial use was high, mainly of broad-spectrum cephalosporins, with a significant increase in the consumption of glycopeptides (p < 0.0001) and carbapenems (p < 0.007) in period B. For Acinetobacter baumannii and members of the Enterobacteriaceae family, 5.27- and 3.06-fold increases in VAPs, respectively, were noted, and a significant increase in resistance rates was found for imipenem-resistant A. baumannii (p = 0.003) and third-generation cephalosporins-resistant Enterobacteriaceae (p = 0.01) isolates in this same period. CONCLUSIONS: Our results suggest that there is a link between antibiotics usage at institutional levels and resistant bacteria. The use of carbapenems was related to the high rate of resistance in A. baumannii and therefore a high consumption of imipenem/meropenem could play a major role in selective pressure exerted by antibiotics in A. baumannii strains.
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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
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                Role: ND
                Journal
                bio
                Biomédica
                Biomédica
                Instituto Nacional de Salud (Bogotá )
                0120-4157
                April 2014
                : 34
                : suppl 1
                : 91-100
                Affiliations
                [1 ] Centro Internacional de Entrenamiento e Investigaciones Médicas (CIDEIM) Colombia
                Article
                S0120-41572014000500011
                10.7705/biomedica.v34i0.1667
                b7b5a5be-7159-4773-a934-37482e03b802

                http://creativecommons.org/licenses/by/4.0/

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                Product

                SciELO Colombia

                Self URI (journal page): http://www.scielo.org.co/scielo.php?script=sci_serial&pid=0120-4157&lng=en
                Categories
                TROPICAL MEDICINE

                Infectious disease & Microbiology
                Gram-negative bacteria,drug resistance, bacterial,epidemiological surveillance,Colombia,bacterias Gram negativas,farmacorresistencia bacteriana,vigilancia epidemiológica

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