Characteristics of different types of Helicobacter pylori: New evidence from non-amplified white light endoscopy
Weidong Liu1, Wenjie Kong2,3, Wenjia Hui2,3
1College of Life Science and Technology, Xinjiang University, Urumqi, China.
Background:
Different types of Helicobacter pylori (H. pylori) were analyzed to determine their infection characteristics using serology, pathology, and non-magnification white light endoscopy combined with the Kimura-Takemoto classification, and the regular arrangement of collecting venules (RAC) as well.
Materials And Methods:
A retrospective analysis of 685 inpatients who have completed the 14C-urea breath test, the H. pylori antibody typing classification, the serum gastric function tests (PGI/PGII/G-17), the endoscope detection, and the pathological examinations.
Results:
The levels of PGI, PGII, and G-17 were in descending order from the type I H. pylori infection group to the type II H. pylori infection group than the control group (F = 14.31; 26.23; 9.12, P < 0.01). Using the Kimura-Takemoto classification, there were significant differences among the three groups of different degrees of atrophy ( =29.81; 482.78; 292.5, P< 0.01). Based on the characteristics of RAC, the H. pylori infection rates were in descending order from the type I H. pylori infection group to the type II H. pylori infection group than the control group ( = 200.39; 174.72; 143.51, P < 0.01). The type I H. pylori infection group had higher grades than those of the type II H. pylori infection group in the OLGA and OLGIM staging systems, while the differences are statistically significant only in the OLGA staging system ( =10.63, P < 0.05).
Conclusion:
With the aid of non-amplified white light endoscopy, we found new evidence of type I H. pylori infection accelerating the progression of gastric mucosal atrophy through the degree of atrophy and the range of infection, whereas type II H. pylori infection has a low ability of migration and atrophy progression. Individual virulence factor-based eradication therapy may be a better choice in future.
Insights
Type I Helicobacter pylori (H. pylori) infection accelerates gastric atrophy more than type II. White light endoscopy revealed type I H. pylori infection progresses gastric mucosal atrophy, while type II shows limited migration and atrophy progression.
Area of Science:
- Gastroenterology
- Infectious Diseases
- Pathology
Background:
- Helicobacter pylori (H. pylori) infection is a significant global health concern.
- Understanding the distinct characteristics of different H. pylori types is crucial for effective management.
- Previous studies have explored H. pylori virulence but lacked detailed comparative analysis of infection types.
Purpose of the Study:
- To investigate and differentiate the infection characteristics of various Helicobacter pylori (H. pylori) types.
- To assess the association between H. pylori infection types and gastric mucosal atrophy.
- To evaluate the utility of non-magnification white light endoscopy and specific classifications in distinguishing H. pylori infection patterns.
Main Methods:
- Retrospective analysis of 685 inpatients.
- Utilized 14C-urea breath test, H. pylori antibody typing, serum gastric function tests (PGI/PGII/G-17), endoscopy, and pathological examinations.
- Employed Kimura-Takemoto classification and regular arrangement of collecting venules (RAC) assessment.
Main Results:
- Type I H. pylori infection group showed significantly higher levels of PGI, PGII, and G-17 compared to type II and control groups.
- Significant differences in atrophy degrees were observed among the three groups based on Kimura-Takemoto classification.
- H. pylori infection rates, assessed by RAC, were highest in type I, followed by type II, and then the control group.
Conclusions:
- Type I H. pylori infection accelerates gastric mucosal atrophy progression more significantly than type II infection.
- Type II H. pylori infection demonstrates a limited capacity for migration and atrophy progression.
- Future therapeutic strategies may benefit from individualized, virulence factor-based eradication approaches for H. pylori.
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