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Updated: Aug 18, 2026

Bile Salt-induced Biofilm Formation in Enteric Pathogens: Techniques for Identification and Quantification
Published on: May 6, 2018
Is there a synergistic effect between mixed bacterial infection in biofilm formation on biliary stents?
1Division of Gastroenterology and C. W. Law Biofilm Research Center, University of California, Davis Medical Center, Sacramento 95817, USA.
Background:
Biliary sludge which forms as a result of bacterial adherence and biofilm formation in the biliary system is a recognized cause of blockage of plastic stents. Bacteriological cultures of sludge have revealed a mixed infection with gram-positive and gram-negative bacteria. Animal studies have shown that prophylactic ciprofloxacin, which selectively suppress gram-negative bacteria, results in prolonged stent patency despite colonization of the stents by gram-positive bacteria.
Methods:
We tested a possible synergistic effect between gram-negative and gram-positive bacteria in adherence and biofilm formation on plastic stents. Clinical isolates of Escherichia coli and Enterococcus were cultured in separate chemostats to achieve a steady growth. Adherence of the two bacteria on plastic stent surface were tested separately by perfusing infected bile with the respective bacteria through different modified Robbins devices containing 10F polyethylene stent pieces up to 4 days. In a second experiment, Enterococcus was perfused through stent pieces precolonized with E. coli for 24 hours. The stent pieces were then removed daily and analyzed by bacteriologic culture and scanning electron microscopy for bacterial adherence and biofilm formation.
Results:
Gram-negative E. coli were more adherent than gram-positive Enterococcus. Precolonization with E. coli facilitates subsequent attachment of Enterococcus.
Conclusions:
We concluded that there is a synergistic effect between gram-positive and gram-negative bacteria in adherence and biofilm formation.
Insights
Bacterial interactions in biliary sludge promote biofilm formation and stent blockage. Gram-negative bacteria enhance the adherence of gram-positive bacteria, indicating a synergistic effect that impacts stent patency.
Area of Science:
- Microbiology
- Biomedical Engineering
- Gastroenterology
Background:
- Biliary sludge, a mix of gram-positive and gram-negative bacteria, causes plastic stent blockage.
- Animal studies suggest suppressing gram-negative bacteria may improve stent patency.
Purpose of the Study:
- To investigate the synergistic effect of gram-negative and gram-positive bacteria on biofilm formation and adherence to plastic stents.
Main Methods:
- Cultured clinical isolates of Escherichia coli (gram-negative) and Enterococcus (gram-positive).
- Tested bacterial adherence on plastic stent pieces using modified Robbins devices with infected bile.
- Analyzed bacterial adherence and biofilm formation via culture and scanning electron microscopy.
Main Results:
- Escherichia coli demonstrated higher adherence to plastic stents compared to Enterococcus.
- Pre-colonization of stents with E. coli facilitated subsequent Enterococcus attachment.
Conclusions:
- A synergistic interaction exists between gram-positive and gram-negative bacteria in biofilm formation on biliary stents.
- This synergy contributes to stent blockage and reduced patency.
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