Enterococcus faecalis Is Associated with Anastomotic Leak in Patients Undergoing Colorectal Surgery

Dana I Anderson1, Robert Keskey2, Max T Ackerman1

  • 1University of Chicago, Pritzker School of Medicine, Chicago, Illinois, USA.

Surgical Infections
|July 13, 2021
PubMed

Insights

Collagenase-producing bacteria, like Enterococcus faecalis, are linked to anastomotic leaks after colorectal surgery in humans. Targeting these specific bacteria may help reduce leak complications.

Area of Science:

  • Colorectal surgery
  • Surgical infections
  • Microbiology

Background:

  • Anastomotic leak is a severe complication following colorectal surgery.
  • Rodent studies suggest collagenase-producing bacteria, particularly Enterococcus faecalis, contribute to anastomotic leaks.
  • The role of these bacteria in human anastomotic leaks remains unclear.

Purpose of the Study:

  • To investigate the association between specific bacterial profiles and anastomotic leaks in human colorectal surgery patients.
  • To determine if collagenase-producing and antibiotic-resistant organisms are more prevalent in anastomotic leak infections.

Main Methods:

  • Retrospective analysis of 42 patients with post-operative infections after colorectal resection.
  • Stratification of infections into anastomotic leak, stump leak, or deep infection groups.
  • Culture data analysis to identify bacterial species and their collagenase-producing and antibiotic-resistance capabilities.

Main Results:

  • Enterococcus faecalis was identified in 24% of infections and associated with anastomotic leak (p=0.029).
  • Collagenase-producing organisms were found in 74% of anastomotic leak cases versus 28% in other infections (p=0.022).
  • Antibiotic-resistant organisms were more common in patients with anastomotic leak (p=0.01).

Conclusions:

  • Collagenase-producing and antibiotic-resistant bacteria are more prevalent in anastomotic leak infections.
  • Findings support a bacterial pathogenesis for anastomotic leaks.
  • Targeting these specific organisms may offer a novel strategy to reduce anastomotic leak complications.

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