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Updated: Sep 21, 2025

Gastric Mucosa Quantitative Polymerase Chain Reaction Analysis for Detecting Helicobacter pylori and Antibiotic Resistance
Published on: March 7, 2025
Helicobacter pylori, gastric microbiota and gastric cancer relationship: Unrolling the tangle
Christos Liatsos1, Apostolis Papaefthymiou2, Nikolaos Kyriakos2
1Department of Gastroenterology, 401 General Military Hospital of Athens, Athens 11525, Greece. cliatsos@yahoo.com.
Abstract:
Helicobacter pylori infection (Hp-I) represents a typical microbial agent intervening in the complex mechanisms of gastric homeostasis by disturbing the balance between the host gastric microbiota and mucosa-related factors, leading to inflammatory changes, dysbiosis and eventually gastric cancer. The normal gastric microbiota shows diversity, with Proteobacteria [Helicobacter pylori (H. pylori) belongs to this family], Firmicutes, Actinobacteria, Bacteroides and Fusobacteria being the most abundant phyla. Most studies indicate that H. pylori has inhibitory effects on the colonization of other bacteria, harboring a lower diversity of them in the stomach. When comparing the healthy with the diseased stomach, there is a change in the composition of the gastric microbiome with increasing abundance of H. pylori (where present) in the gastritis stage, while as the gastric carcinogenesis cascade progresses to gastric cancer, the oral and intestinal-type pathogenic microbial strains predominate. Hp-I creates a premalignant environment of atrophy and intestinal metaplasia and the subsequent alteration in gastric microbiota seems to play a crucial role in gastric tumorigenesis itself. Successful H. pylori eradication is suggested to restore gastric microbiota, at least in primary stages. It is more than clear that Hp-I, gastric microbiota and gastric cancer constitute a challenging tangle and the strong interaction between them makes it difficult to unroll. Future studies are considered of crucial importance to test the complex interaction on the modulation of the gastric microbiota by H. pylori as well as on the relationships between the gastric microbiota and gastric carcinogenesis.
Insights
Helicobacter pylori infection disrupts gastric homeostasis, altering the stomach
Area of Science:
- Microbiology
- Gastroenterology
- Oncology
Background:
- Helicobacter pylori infection (Hp-I) disrupts gastric homeostasis, leading to inflammation, dysbiosis, and gastric cancer.
- The healthy gastric microbiota is diverse, but Hp-I reduces diversity and alters composition.
- Gastric carcinogenesis involves changes in microbial strains, with oral and intestinal pathogens predominating in later stages.
Purpose of the Study:
- To investigate the complex interplay between H. pylori, gastric microbiota, and gastric carcinogenesis.
- To understand how H. pylori modulates the gastric microbiota.
- To explore the role of gastric microbiota alterations in the progression of gastric cancer.
Main Methods:
- Review of existing literature on H. pylori infection and gastric microbiota.
- Analysis of microbial composition changes in healthy, gastritis, and gastric cancer states.
- Examination of the impact of H. pylori eradication on gastric microbiota restoration.
Main Results:
- H. pylori alters gastric microbiota diversity and composition, favoring dysbiosis.
- The progression of gastric carcinogenesis is associated with an increase in pathogenic microbial strains.
- H. pylori eradication may restore gastric microbiota in early stages.
Conclusions:
- H. pylori infection, gastric microbiota dysbiosis, and gastric cancer are intricately linked.
- Altered gastric microbiota plays a crucial role in gastric tumorigenesis.
- Further research is essential to elucidate the complex interactions for potential therapeutic strategies.
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