[Selective intestinal bacterial decontamination in experimental acute pancreatitis]

G de las Heras1, J L Forcelledo, J M Gutiérrez

  • 1Instituto de Patología Digestiva y Servicios de Bacteriología y Bioquímica, Hospital Universitario Marqués de Valdecilla, Santander.

Gastroenterologia Y Hepatologia
|January 10, 2001
PubMed
Abstract

Insights

Bacterial decontamination before acute pancreatitis (AP) in rats significantly reduced bacterial translocation, with E. coli being the most common bacteria found. This suggests gut decontamination is a viable strategy for managing AP complications.

Area of Science:

  • Gastroenterology
  • Microbiology
  • Surgical Research

Background:

  • Bacterial translocation, the movement of gut bacteria to other organs, is a key factor in severe acute pancreatitis (AP) mortality.
  • This phenomenon occurs in a significant percentage of necrotizing hemorrhagic AP cases, contributing to up to 80% of deaths.

Purpose of the Study:

  • To investigate the impact of gut bacterial decontamination on bacterial translocation in a rat model of severe experimental acute pancreatitis.

Main Methods:

  • Severe acute pancreatitis was induced in Sprague-Dawley rats.
  • One group received antibiotic treatment (gentamicin, bacitracin, neomycin) prior to AP induction, while the control group did not.
  • Bacterial cultures were obtained from various organs, including mesenteric lymphatic ganglia and pancreas, 24 hours post-induction.

Main Results:

  • The antibiotic-treated group showed a significantly lower incidence of positive pancreatic cultures (2/17) compared to the control group (9/17).
  • Escherichia coli, enterococcus, and proteus were the most frequently isolated bacteria.
  • No significant difference was observed in the Gram-positive/Gram-negative bacterial balance between groups.

Conclusions:

  • The majority of bacteria in AP tissues originate from the intestinal microflora, primarily E. coli.
  • Bacterial translocation occurs early in AP, predominantly via the lymphatic pathway.
  • Pre-emptive bacterial decontamination reduces bacterial translocation frequency without altering the microbial balance or increasing fungal infections.

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