Microbiological spectrum and antibiotic sensitivity in endophthalmitis: a 25-year review

To identify the spectrum and susceptibility pattern of pathogens responsible for culture-positive endophthalmitis referred to a single institution and investigate possible trends in both pathogens and antibiotic sensitivities over the past 25 years. A retrospective, laboratory-based study of consecu...

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Veröffentlicht in:Ophthalmology (Rochester, Minn.) Minn.), 2014-08, Vol.121 (8), p.1634-1642
Hauptverfasser: Gentile, Ronald C, Shukla, Salil, Shah, Mahendra, Ritterband, David C, Engelbert, Michael, Davis, Andrew, Hu, Dan-Ning
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Sprache:eng
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Zusammenfassung:To identify the spectrum and susceptibility pattern of pathogens responsible for culture-positive endophthalmitis referred to a single institution and investigate possible trends in both pathogens and antibiotic sensitivities over the past 25 years. A retrospective, laboratory-based study of consecutive microbiological isolates. A total of 988 consecutive culture-positive endophthalmitis isolates from 911 eyes. All culture-positive endophthalmitis isolates collected from 1987 to 2011 were identified. Susceptibility rates to a variety of antibiotics were calculated. Chi-square test for trend was used to detect changes in spectrum or susceptibility over time. Microbial spectrum and susceptibility pattern over time. A total of 988 isolates were identified from 911 eyes. The average patient age was 67 ± 18 years, and 55% of the patients were female. The most prevalent pathogens were coagulase-negative staphylococcus (39.4%), followed by Streptococcus viridans species (12.1%) and Staphylococcus aureus (11.1%). Gram-negative organisms and fungi accounted for 10.3% and 4.6% of all isolates, respectively. With the exception of 2 isolates, Enterococcus faecium and Nocardia exalbida, all the other 725 (99.7%) gram-positive bacteria tested were susceptible to vancomycin. Of the 94 gram-negative organisms tested against ceftazidime, 2 were of intermediate sensitivity and 6 were resistant. For 8 antibiotics, increasing microbial resistance over time was observed: cefazolin (P = 0.02), cefotetan (P = 0.006), cephalothin (P
ISSN:1549-4713
DOI:10.1016/j.ophtha.2014.02.001