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Increase in Antibiotic-Resistant Gram-Negative Bacterial Infections in Febrile Neutropenic Children

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Date 2016 Sep 24
PMID 27659431
Citations 14
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Abstract

Background: The incidence of bacteremia caused by Gram-negative bacteria has increased recently in febrile neutropenic patients with the increase of antibiotic-resistant Gram-negative bacterial infections. This study aimed to identify the distribution of causative bacteria and the proportion of antibiotic-resistant bacteria in bacteremia diagnosed in febrile neutropenic children.

Materials And Methods: The medical records of febrile neutropenic children diagnosed with bacteremia between 2010 and 2014 were retrospectively reviewed. The causative bacteria and proportion of antibiotic-resistant bacteria were investigated and compared yearly during the study period. The clinical impact of antibiotic-resistant bacterial infections was also determined.

Results: A total of 336 bacteremia episodes were identified. During the entire study period, 181 (53.9%) and 155 (46.1%) episodes were caused by Gram-negative and Gram-positive bacteria, respectively. Viridans streptococci (25.9%), Klebsiella spp. (16.7%), and Escherichia coli (16.4%) were the most frequent causative bacteria. The overall distribution of causative bacteria was not significantly different annually. Antibiotic-resistant bacteria were identified in 85 (25.3%) episodes, and the proportion of antibiotic-resistant bacteria was not significantly different annually. Extended-spectrum β-lactamase-producing E. coli and Klebsiella spp. were most common among antibiotic-resistant Gram-negative bacteria, and they accounted for 30.6% (n = 34) of the identified E. coli and K. pneumoniae. Methicillin-resistant coagulase-negative staphylococci were most common among antibiotic-resistant Gram-positive bacteria, and it accounted for 88.5% (n = 23) of the identified coagulase-negative staphylococci. Antibiotic-resistant bacterial infections, especially antibiotic-resistant Gram-negative bacterial infections, caused significantly higher mortality due to bacteremia compared with non-antibiotic-resistant bacterial infections (P < 0.001).

Conclusion: Recently, Gram-negative bacteria caused more bacteremia cases than Gram-positive bacteria in febrile neutropenic children, and antibiotic-resistant Gram-negative bacterial infections increased. Antibiotic-resistant bacterial infections caused poorer prognosis compared with non-antibiotic-resistant bacterial infections, and therefore, continuous surveillance for changing epidemiology of antibiotic-resistant bacterial infections and their clinical impact is necessary.

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References
1.
Miedema K, Winter R, Ammann R, Droz S, Spanjaard L, de Bont E . Bacteria causing bacteremia in pediatric cancer patients presenting with febrile neutropenia--species distribution and susceptibility patterns. Support Care Cancer. 2013; 21(9):2417-26. DOI: 10.1007/s00520-013-1797-4. View

2.
Irfan S, Idrees F, Mehraj V, Habib F, Adil S, Hasan R . Emergence of Carbapenem resistant Gram negative and vancomycin resistant Gram positive organisms in bacteremic isolates of febrile neutropenic patients: a descriptive study. BMC Infect Dis. 2008; 8:80. PMC: 2442601. DOI: 10.1186/1471-2334-8-80. View

3.
Funada H, Matsuda T . Changes in the incidence and etiological patterns of bacteremia associated with acute leukemia over a 25-year period. Intern Med. 1999; 37(12):1014-8. DOI: 10.2169/internalmedicine.37.1014. View

4.
Lee D, Kim S, Kim S, Kim C, Beom Park W, Song Y . Evidence-based guidelines for empirical therapy of neutropenic fever in Korea. Korean J Intern Med. 2011; 26(2):220-52. PMC: 3110859. DOI: 10.3904/kjim.2011.26.2.220. View

5.
Marin M, Gudiol C, Ardanuy C, Garcia-Vidal C, Calvo M, Arnan M . Bloodstream infections in neutropenic patients with cancer: differences between patients with haematological malignancies and solid tumours. J Infect. 2014; 69(5):417-23. DOI: 10.1016/j.jinf.2014.05.018. View