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Confirmation of translocated gastrointestinal bacteria in a neonatal model

  • Jason Moy
  • , Donald J. Lee
  • , Carroll M. Harmon
  • , Robert A. Drongowski
  • , Arnold G. Coran
  • University of Michigan, Ann Arbor

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

Purpose. The hypothesis that enteric bacteria translocate from the gastrointestinal (GI) tract to extraintestinal sites has been extensively studied. However, definitive evidence that spontaneous bacterial translocation and dissemination from the GI tract to extraintestinal sites occur in a neonatal model has been lacking. The aim of this study was to confirm this phenomenon by tracking enterally administered, plasmid-labeled bacteria to extraintestinal sites. Materials and Methods. Escherichia coli 07:K1 (E. coli K1) with and without a nontransferable, ampicillin resistance plasmid (pGEM-7) were used in this study. Newborn New Zealand white rabbit pups were separated into three treatment groups: transformed E. coli K1 (E. coli K1 + pGEM-7, n = 20), nontransformed E. coli K1 (n = 12), and control pups (no bacteria, n = 7). Pups were enterally fed 10% Formulac solution supplemented with a suspension of bacteria respective to their group. After the pups fed twice daily for 2 days, representative tissue specimens from the small bowel (SB), mesenteric lymph nodes (MLNs), spleen (SPL), and liver (LIV) were aseptically harvested and tested for culture growth in ampicillin- supplemented medium. Results. Positive growths of plasmid-induced ampicillin- resistant bacteria were detected in tissue specimens harvested from rabbits fed transformed E. coli K1, but were not detected in the other groups. Conclusion. This experiment demonstrated conclusively that transformed E. coli K1 fed to healthy rabbit pups spontaneously translocated from the intestinal lumen and subsequently disseminated to the mesenteric lymph nodes, spleen, and liver.

Original languageEnglish
Pages (from-to)85-89
Number of pages5
JournalJournal of Surgical Research
Volume87
Issue number1
DOIs
StatePublished - Nov 1999

Keywords

  • Bacterial translocation
  • Escherichia coli
  • Neonate
  • Plasmid DNA

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