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Updated: Feb 15, 2026

Mouse Models Of Helicobacter Infection And Gastric Pathologies
Published on: October 18, 2018
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.
Abstract:
The human gastric lumen is one of the most hostile environments of the human body suspected to be sterile until the discovery of Helicobacter pylori (H.p.). State of the art next generation sequencing technologies multiply the knowledge on H.p. functional genomics as well as on the colonization of supposed sterile human environments like the gastric habitat. Here we studied in a prospective, multicenter, clinical trial the 16S rRNA gene amplicon based bacterial microbiome in a total of 30 homogenized and frozen gastric biopsy samples from eight geographic locations. The evaluation of the samples for H.p. infection status was done by histopathology and a specific PCR assay. CagA status was determined by a CagA-specific PCR assay. Patients were grouped accordingly as H.p.-negative, H.p.-positive but CagA-negative and H.p.-positive and CagA-positive (n = 10, respectively). Here we show that H.p. infection of the gastric habitat dominates the gastric microbiota in most patients and is associated with a significant decrease of the microbial alpha diversity from H.p. negative to H.p. positive with CagA as a considerable factor. The genera Actinomyces, Granulicatella, Veillonella, Fusobacterium, Neisseria, Helicobacter, Streptococcus, and Prevotella are significantly different between the H.p.-positive and H.p.-negative sample groups. Differences in microbiota found between CagA-positive and CagA-negative patients were not statistically significant and need to be re-evaluated in larger sample cohorts. In conclusion, H.p. infection dominates the gastric microbiome in a multicentre cohort of patients with varying diagnoses.
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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