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Published on: March 31, 2021
Helicobacter pylori Outer Membrane Vesicles: Biogenesis, Composition, and Biological Functions
Jiao Li1,2, Tingting Liao3, Eng Guan Chua4
1Center of Infectious Diseases, West China Hospital, Sichuan University, Chengdu, China.
Abstract:
Helicobacter pylori has been recognized not only as a causative agent of a spectrum of gastroduodenal diseases including chronic gastritis, peptic ulcer, mucosa-associated lymphoid tissue lymphoma, and gastric cancer, but also as the culprit in several extra-gastric diseases. However, the association of H. pylori infection with extra-gastric diseases remains elusive, prompting a reevaluation of the role of H. pylori-derived outer membrane vesicles (OMVs). Like other gram-negative bacteria, H. pylori constitutively sheds biologically active OMVs for long-distance delivery of bacterial virulence factors in a concentrated and protected form, averting the need of direct bacterial contact with distant host cells to induce extra-gastric diseases associated with this gastric pathogen. Additionally, H. pylori-derived OMVs contribute to bacterial survival and chronic gastric pathogenesis. Moreover, the immunogenic activity, non-replicable nature, and anti-bacterial adhesion effect of H. pylori OMVs make them a desirable vaccine candidate against infection. The immunogenic potency and safety concerns of the OMV contents are challenges in the development of H. pylori OMV-based vaccines. In this review, we discuss recent advances regarding H. pylori OMVs, focusing on new insights into their biogenesis mechanisms and biological functions.
Insights
Helicobacter pylori outer membrane vesicles (OMVs) are key to extra-gastric diseases and chronic infections. These OMVs show promise as a vaccine candidate, but challenges remain regarding immunogenicity and safety.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Helicobacter pylori is linked to gastroduodenal diseases and extra-gastric conditions.
- The role of H. pylori-derived outer membrane vesicles (OMVs) in these diseases is under investigation.
- OMVs facilitate the delivery of bacterial virulence factors and contribute to pathogenesis.
Purpose of the Study:
- To review recent advances in understanding H. pylori OMVs.
- To explore the biogenesis mechanisms and biological functions of H. pylori OMVs.
- To discuss the potential of H. pylori OMVs as vaccine candidates.
Main Methods:
- Literature review of current research on H. pylori OMVs.
- Analysis of studies on OMV biogenesis and function.
- Evaluation of OMV properties relevant to vaccine development.
Main Results:
- H. pylori OMVs are involved in delivering virulence factors to induce extra-gastric diseases.
- OMVs contribute to bacterial survival and chronic gastric pathogenesis.
- H. pylori OMVs possess immunogenic properties, making them potential vaccine candidates.
Conclusions:
- H. pylori OMVs play a significant role in both gastric and extra-gastric pathogenesis.
- The unique characteristics of H. pylori OMVs present opportunities and challenges for vaccine development.
- Further research into OMV biogenesis and contents is crucial for advancing H. pylori therapeutics and vaccines.
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