The Human Gastric Microbiome Is Predicated upon Infection with Helicobacter pylori

Ingeborg Klymiuk1, Ceren Bilgilier2, Alexander Stadlmann2

  • 1Center for Medical Research, Medical University of Graz, Graz, Austria.

Frontiers in Microbiology
|January 10, 2018
PubMed

Insights

Helicobacter pylori infection significantly alters the gastric microbiome, reducing bacterial diversity. CagA status may influence this, but further research is needed.

Area of Science:

  • Microbiology
  • Human Physiology
  • Genomics

Background:

  • The human stomach was long considered sterile before the discovery of Helicobacter pylori (H.p.).
  • Advancements in next-generation sequencing have expanded our understanding of H.p. and gastric colonization.

Purpose of the Study:

  • To investigate the bacterial microbiome in gastric biopsies from a multicenter clinical trial.
  • To assess the impact of H.p. infection and CagA status on gastric microbiota diversity and composition.

Main Methods:

  • Analysis of 16S rRNA gene amplicons from 30 gastric biopsy samples across eight geographic locations.
  • H.p. infection and CagA status determined by histopathology and specific PCR assays.
  • Patients categorized into H.p.-negative, H.p.-positive/CagA-negative, and H.p.-positive/CagA-positive groups (n=10 each).

Main Results:

  • H.p. infection was found to dominate the gastric microbiota in most patients.
  • A significant decrease in microbial alpha diversity was observed in H.p.-positive compared to H.p.-negative individuals.
  • Specific bacterial genera (e.g., Actinomyces, Streptococcus, Prevotella) showed significant differences between H.p. infection groups.
  • No statistically significant differences in microbiota were found between CagA-positive and CagA-negative patients, warranting larger studies.

Conclusions:

  • H.p. infection plays a dominant role in shaping the gastric microbiome.
  • Gastric microbiota alpha diversity is significantly reduced by H.p. infection, with CagA potentially being a factor.
  • Further investigation with larger cohorts is required to clarify the role of CagA in gastric microbiome alterations.

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