Ciprofloxacin-resistant gram-negative bacilli in the fecal microflora of children

Xuan Qin, Yasmin Razia, James R. Johnson, Jennifer R. Stapp, Daniel R. Boster, Treva Tsosie, Donna L. Smith, Christopher R. Braden, Kathryn Gay, Frederick J. Angulo, Phillip I. Tarr

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

The extent to which antibiotic-resistant bacteria are excreted by humans who have not been exposed to antibiotics is not known. Children, who rarely receive fluoroquinolones, provide opportunities to assess the frequency of fecal excretion by fluoroquinolone-naïve hosts of fluoroquinolone-resistant gram-negative bacilli. Fresh nondiarrheal stools from children were processed by screening them on agar containing ciprofloxacin to recover ciprofloxacin- resistant gram-negative bacilli. Resistant isolates were identified, and ciprofloxacin MICs were determined. Resistant Escherichia coli isolates were also analyzed for urovirulence-associated loci. Thirteen (2.9%) of 455 stools yielded ciprofloxacin-resistant E. coli (seven children), Stenotrophomonas maltophilia (four children), and Achromobacter xylosoxidans and Enterobacter aerogenes (one child each). Neither the subjects themselves nor members of their households used fluoroquinolones in the 4 weeks preceding collection. Six of the seven resistant E. coli isolates belonged to phylogenetic groups B2 and D, in which extraintestinal pathogenic E. coli bacteria are frequently found. All resistant E. coli isolates contained at least three putative E. coli virulence loci. Most ciprofloxacin-resistant bacteria were resistant to additional antibiotics. Potentially pathogenic bacteria that are resistant to therapeutic-ally important antimicrobial agents are excreted by some humans, despite these persons' lack of exposure to the particular drugs. The sources of these resistant organisms are unknown. This underrecognized reservoir of drug-resistant potential pathogens poses public health challenges.

Original languageEnglish (US)
Pages (from-to)3325-3329
Number of pages5
JournalAntimicrobial agents and chemotherapy
Volume50
Issue number10
DOIs
StatePublished - Oct 2006

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