Development of a Trivalent Construct Omp18/AhpC/FlgH Multi Epitope Peptide Vaccine Against Campylobacter jejuni

Hongqiang Lou1, Xusheng Li1, Xiusheng Sheng1

  • 1Medical Molecular Biology Laboratory, School of Medicine, Jinhua Polytechnic, Jinhua, China.

Frontiers in Microbiology
|January 31, 2022
PubMed

Insights

A new trivalent epitope vaccine candidate, AhpC-2/Omp18-1/FlgH-1, was developed for Campylobacter jejuni. This vaccine candidate significantly reduced bacterial colonization in mice, offering a promising strategy against C. jejuni infections.

Area of Science:

  • Microbiology and Immunology
  • Vaccine Development
  • Bioinformatics

Background:

  • Campylobacter jejuni (C. jejuni) is a primary cause of human enteritis, leading to severe complications like Guillain-Barre syndrome.
  • Despite extensive research, no effective vaccine against C. jejuni exists, highlighting the need for novel prevention strategies beyond biosecurity.
  • Surface proteins Omp18, AhpC, and FlgH show potential as antigens due to their antigenicity, strain variability, and conserved sequences.

Purpose of the Study:

  • To analyze T-B antigenic epitopes of C. jejuni Omp18, AhpC, and FlgH using bioinformatics.
  • To screen for dominant T-B combined epitopes and construct a prokaryotic expression system for tandem repeats.
  • To evaluate the immunoprotective efficacy of a trivalent epitope vaccine candidate in a mouse model.

Main Methods:

  • Bioinformatic analysis of T-B epitopes for Omp18, AhpC, and FlgH in C. jejuni NCTC11168.
  • ELISA and Western Blot assays to identify dominant T-B combined epitopes.
  • Construction of a prokaryotic expression system using GGS linkers for tandem epitope peptides (AhpC-2/Omp18-1/FlgH-1) and assessment in a mouse infection model.

Main Results:

  • A stable and antigenic trivalent tandem epitope, AhpC-2/Omp18-1/FlgH-1, was successfully constructed.
  • Immunization of BALB/c mice with the tandem epitope induced protective immunity, characterized by IgG2a antibody response and IFN-γ cytokine production.
  • Significant reduction in C. jejuni colonization was observed in immunized mice, indicating vaccine efficacy.

Conclusions:

  • The developed trivalent epitope AhpC-2/Omp18-1/FlgH-1 shows promise as a candidate antigen for a genetic engineering vaccine against C. jejuni.
  • This approach enhances epitope stability and antigenicity, leading to effective immune responses and reduced bacterial load.
  • Further development of this candidate antigen could provide a novel preventative measure against C. jejuni infections.