Immunogenicity of attenuated measles virus engineered to express Helicobacter pylori neutrophil-activating protein
Ianko D Iankov1, Iana H Haralambieva, Evanthia Galanis
1Department of Molecular Medicine, Mayo Clinic, Rochester, MN 55905, USA.
Abstract:
Helicobacter pylori is a Gram-negative, spiral-shaped microorganism associated with acute and chronic gastritis, peptic ulcer, gastric cancer and gastric lymphomas in humans. H. pylori neutrophil-activating protein (NAP) is a major virulence factor playing a central role in pathogenesis of mucosal inflammation by immune cell attraction and Th1 cytokine response polarization. NAP is protective antigen and promising vaccine candidate against H. pylori infection. Here we present the development of measles virus (MV) vaccine strain encoding the NAP antigen. In order to facilitate the extracellular transport and detection, NAP was inserted in the human lambda immunoglobulin chain replacing a major part of the variable domain. We generated two MV vectors expressing secretory NAP forms: MV-lambda-NAP encoding the full-length constant lambda light chain domain and MV-s-NAP encoding only the N-terminus of the lambda light chain with the leader peptide. Immunization of MV permissive Ifnarko-CD46Ge transgenic mice by a single intraperitoneal injection of the NAP-expressing strains induced a robust, long-term humoral and cellular immune response against MV. Nine months post vaccination measles-neutralizing antibody titers were above the serum level considered protective for humans. Furthermore, all animals immunized with MV strains expressing the secretory NAP antigen developed strong humoral immunity against NAP, reaching titers >1:10,000 within 2-4 weeks. IFN-γ ELISpot assay confirmed that NAP-encoding MV vectors can also stimulate NAP-specific cell-mediated immunity. Our data demonstrate that MV is an excellent vector platform for expression of bacterial antigens and development of vaccines for H. pylori immunoprophylaxis in humans.
Insights
Measles virus (MV) vectors expressing Helicobacter pylori neutrophil-activating protein (NAP) were developed as a vaccine candidate. Immunized mice showed robust, long-term immune responses against both MV and NAP, indicating MV
Area of Science:
- * Virology
- * Immunology
- * Vaccinology
Background:
- * Helicobacter pylori (H. pylori) is a bacterium linked to gastritis, ulcers, and gastric cancers.
- * H. pylori neutrophil-activating protein (NAP) is a key virulence factor and a potential vaccine antigen.
- * Developing effective H. pylori vaccines is crucial for preventing associated diseases.
Purpose of the Study:
- * To engineer a measles virus (MV) vaccine vector expressing H. pylori NAP.
- * To evaluate the immunogenicity of MV-based NAP vaccine candidates in a mouse model.
- * To assess the potential of MV as a platform for H. pylori immunoprophylaxis.
Main Methods:
- * Construction of two MV vectors (MV-lambda-NAP and MV-s-NAP) encoding secretory forms of NAP.
- * Immunization of transgenic mice with MV-NAP vaccine candidates.
- * Assessment of humoral immunity (antibody titers) and cellular immunity (IFN-γ ELISpot) against MV and NAP.
Main Results:
- * MV-NAP vaccination induced robust, long-term humoral and cellular immune responses against MV.
- * High titers of measles-neutralizing antibodies were sustained for at least nine months post-vaccination.
- * Strong humoral immunity against NAP (>1:10,000 titers) and NAP-specific cell-mediated immunity were observed within weeks.
Conclusions:
- * Measles virus is a viable and effective vector platform for expressing bacterial antigens like H. pylori NAP.
- * MV-based vaccines expressing NAP can elicit significant humoral and cellular immune responses.
- * This approach shows promise for developing a novel vaccine against H. pylori infection.
More Related Videos
Related Concept Videos
Gastritis II: Pathophysiology
Peptic Ulcer Disease II: Pathophysiology


