Distribution of Pathogens and Resistance Detection in Urinary Infection
Chuan Liang-min
Abstract
Chuan Liang-min
Abstract
OBJECTIVE To determine distribution of pathogens and resistance characteristic and to provide basis for clinicians to select antibiotics correctly and control nosocomial infection. METHODS A total of 151 strains of pathogens were identified. ESBLs-producing G - bacteria were detected and high-level aminoglycoside resistance in Enterococcus(HLAR) were screened. RESULTS Among 151 strains, 53.64% Escherichia coli, 9.27% Enterococcus, 7.95% coagulase negative Staphylococcus and 5.96% Pseudomonas were detected. 13.58% E.coli and 16.67% Klebsiella pneumoniae produced ESBLs. HLAR-producing Enterococcus was 57.14%. CONCLUSIONS Much attention should be paid to resistance detection in urinary infection. It is important to control nosocomial infection and select antibiotics correctly.
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OBJECTIVE To determine distribution of pathogens and resistance characteristic and to provide basis for clinicians to select antibiotics correctly and control nosocomial infection. METHODS A total of 151 strains of pathogens were identified. ESBLs-producing G - bacteria were detected and high-level aminoglycoside resistance in Enterococcus(HLAR) were screened. RESULTS Among 151 strains, 53.64% Escherichia coli, 9.27% Enterococcus, 7.95% coagulase negative Staphylococcus and 5.96% Pseudomonas were detected. 13.58% E.coli and 16.67% Klebsiella pneumoniae produced ESBLs. HLAR-producing Enterococcus was 57.14%. CONCLUSIONS Much attention should be paid to resistance detection in urinary infection. It is important to control nosocomial infection and select antibiotics correctly.
Key concepts: Klebsiella pneumoniae, Enterococcus, Microbiology, Antibiotics, Pseudomonas aeruginosa, Coagulase, Klebsiella, Biology