Detection of Helicobacter pylori DNA in aortic and left internal mammary artery biopsies

Erkan Iriz1, Meltem Yalinay Cirak, Evren Doruk Engin

  • 1Department of Cardiovascular Surgery, Gazi University School of Medicine, 06500 Ankara, Turkey. erkaniriz@hotmail.com

Insights

Helicobacter pylori DNA was detected in 26% of aortic samples without plaques from patients with coronary artery disease. This finding suggests a potential role for H. pylori in atherosclerosis development.

Area of Science:

  • Cardiovascular Research
  • Infectious Disease Epidemiology
  • Molecular Pathology

Background:

  • Atherosclerosis is a complex disease involving inflammation and plaque formation in arteries.
  • The role of infectious agents, such as Helicobacter pylori, in cardiovascular disease pathogenesis is under investigation.

Purpose of the Study:

  • To investigate the presence of Helicobacter pylori DNA in aortic tissue samples.
  • To explore the association between H. pylori DNA and acute coronary ischemia in macroscopically plaque-free aortic regions.

Main Methods:

  • Real-time polymerase chain reaction (PCR) was used to detect H. pylori DNA.
  • Biopsy samples were collected from the aorta (plaque-free regions and internal mammary artery) of patients undergoing coronary artery bypass grafting.
  • A control group of patients without atherosclerotic vascular disease was included for comparison.

Main Results:

  • Helicobacter pylori DNA was detected in 26% of macroscopically plaque-free aortic tissue samples from patients with coronary artery disease.
  • H. pylori DNA was not found in internal mammary artery samples or in aortic samples from the control group.
  • A significant association was observed between the presence of H. pylori DNA and acute coronary ischemia.

Conclusions:

  • The detection of H. pylori DNA in plaque-free aortic tissue suggests a potential role for this bacterium in the early stages of atherosclerosis.
  • These findings highlight the possible involvement of microorganisms in the pathogenesis of atherosclerotic coronary artery disease.