Mice are protected from Helicobacter pylori infection by nasal immunization with attenuated Salmonella typhimurium phoPc expressing urease A and B subunits.
- 1 February 1998
- journal article
- Vol. 66 (2) , 581-6
Abstract
Live Salmonella typhimurium phoPc bacteria were tested as mucosal vaccine vectors to deliver Helicobacter pylori antigens. The genes encoding the A and B subunits of H. pylori urease were introduced into S. typhimurium phoPc and expressed under the control of a constitutive tac promoter (tac-ureAB) or a two-phase T7 expression system (cT7-ureAB). Both recombinant Salmonella strains expressed the two urease subunits in vitro and were used to nasally immunize BALB/c mice. The plasmid carrying cT7-ureAB was stably inherited by bacteria growing or persisting in the spleen, lungs, mesenteric or cervical lymph nodes, and Peyer's patches of immunized mice, while the plasmid carrying tac-ureAB was rapidly lost. Spleen and Peyer's patch CD4+ lymphocytes from mice immunized with S. typhimurium phopc cT7-ureAB proliferated in vitro in response to urease, whereas cells from mice given S. typhimurium phoPc alone did not. Splenic CD4+ cells from mice immunized with phoPc cT7-ureAB secreted gamma interferon and interleukin 10, while Peyer's patch CD4+ cells did not secrete either cytokine. Specific H. pylori anti-urease immunoglobulin G1 (IgG1) and IgG2A antibodies were detected following immunization, confirming that both Th1- and Th2-type immune responses were generated by the live vaccine. Sixty percent of the mice (9 of 15) immunized with S. typhimurium phoPc cT7-ureAB were found to be resistant to infection by H. pylori, while all mice immunized with phoPc tac-ureAB (15 of 15) or phoPc (15 of 15) were infected. Our data demonstrate that H. pylori urease delivered nasally by using a vaccine strain of S. typhimurium can trigger Th1- and Th2-type responses and induce protective immunity against Helicobacter infection.This publication has 41 references indexed in Scilit:
- Novel intranasal immunization techniques for antibody induction and protection of mice against gastric Helicobacter felis infectionVaccine, 1997
- Expression of mRNA for Interferon-Gamma, Interleukin-10, and Interleukin-12 (p40) in Normal Gastric Mucosa and in Mucosa Infected withHelicobacter pyloriScandinavian Journal of Gastroenterology, 1997
- Distinct populations of dendritic cells are present in the subepithelial dome and T cell regions of the murine Peyer's patch.The Journal of Experimental Medicine, 1996
- Oral immunization with Helicobacter pylori urease B subunit as a treatment against Helicobacter infection in miceGastroenterology, 1995
- Oral Immunization with Recombinant Helicobacter pylori Urease Induces Secretory IgA Antibodies and Protects Mice from Challenge with Helicobacter felisThe Journal of Infectious Diseases, 1995
- Therapeutic Immunisation against hellcobacter InfectionThe Lancet, 1994
- Aflagellated mutants of Helicobacter pylori generated by genetic transformation of naturally competent strains using transposon shuttle mutagenesisMolecular Microbiology, 1993
- Strategies of Anti‐Cytokine Monoclonal Antibody Development: Immunoassay of IL‐10 and IL‐5 in Clinical SamplesImmunological Reviews, 1992
- Helicobacter pylori-associated gastritis and primary B-cell gastric lymphomaThe Lancet, 1991
- Safety, infectivity, immunogenicity, and in vivo stability of two attenuated auxotrophic mutant strains of Salmonella typhi, 541Ty and 543Ty, as live oral vaccines in humans.Journal of Clinical Investigation, 1987