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Sökning: L773:1083 4389

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11.
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12.
  • Adamsson, Jenni, 1977, et al. (författare)
  • Immune Responses Against Helicobacter pylori in Gastric Cancer Patients and in Risk Groups for Gastric Cancer.
  • 2013
  • Ingår i: Helicobacter. - : Wiley. - 1523-5378 .- 1083-4389. ; 18:1, s. 73-82
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: It has previously been reported that weak serum IgG but elevated IgA antibody responses against H.pylori may be associated with risk of gastric cancer (GC) development. To search for potential immunologic markers for GC, we analyzed antibody responses against H.pylori in risk groups of cancer development. MATERIAL AND METHODS: Sera and stomach biopsies collected from H.pylori-infected GC patients as well as from patients with gastric ulcer (GU), atrophic gastritis, intestinal metaplasia (IM) and duodenal ulcer and from H.pylori-infected control subjects without atrophy or IM, and in addition from H.pylori-negative subjects were analyzed for IgG and IgA antibodies against three different H.pylori antigen preparations, that is, membrane protein (MP), urease, and CagA. RESULTS: We observed an increased serum IgA/IgG titer ratio against H.pylori anti-MP in GC and GU patients, and against CagA in Hp-infected GC patients and risk groups. Female patients with GC had a higher serum anti-MP IgA/IgG titer ratio and a higher proportion of poorly differentiated cancer compared with male patients. As earlier observed, the non-tumorous mucosa of H.pylori-infected GC patients contained considerably lower levels of total IgA and H.pylori-specific IgA compared with H.pylori-infected controls. Similarly, we observed decreased specific mucosal anti-MP IgA response in patients with IM. CONCLUSION: We observed several differences in local and systemic immunologic responses against H.pylori in H.pylori-infected GC patients and putative GC risk group patients compared with H.pylori-infected controls. These findings may be of importance in efforts to identify risk groups of GC or early stages of GC.
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  • Akter, S., et al. (författare)
  • The frequency of circulating integrin alpha 4 beta 7(+) cells correlates with protection against Helicobacter pylori infection in immunized mice
  • 2019
  • Ingår i: Helicobacter. - : Wiley. - 1083-4389 .- 1523-5378. ; 24:6
  • Tidskriftsartikel (refereegranskat)abstract
    • Background Chronic Helicobacter pylori infection is the cause of peptic ulcers in a subpopulation of individuals and a risk factor for the development of gastric cancer. A vaccine against H pylori infection can prevent the acquisition of the infection and protect against reinfections. Clinical trials to date evaluating the efficacy of H pylori vaccines in human challenge models have shown moderate to poor protection with difficulties in predicting efficacy. Thus, while further studies are needed to design an effective vaccine, we also need to find relevant correlates for vaccine efficacy. Objective To find immune correlates to vaccine efficacy, the frequencies of neutrophils, eosinophils and inflammatory monocytes and CD4(+) T-cell memory and mucosa homing integrin alpha 4 beta 7(+) cells were assessed by flow cytometry in the blood of mice after vaccination. Materials and Methods H pylori antigens and cholera toxin or the multiple mutant CT (mmCT) were administered via the sublingual (SL) and intragastric route (IG). The vaccinated mice were infected with H pylori strain SS1 bacteria, and colonization in the stomach and immune responses were evaluated. Results The H pylori vaccine was effective in reducing bacterial load in the stomach of mice and enhancing immune responses compared to unvaccinated infection controls. In the blood of mice after SL or IG route of vaccination, we observed changes in frequencies of innate and adaptive immune cell subsets compared to infection controls. Remarkably, the frequency of circulating mucosal homing alpha 4 beta 7(+)CD4(+) T cells after vaccination correlated with low bacterial load in the stomach of individual mice irrespective of the immunization route. Conclusions Our study shows that the innate and adaptive immune cell subsets can be measured in the blood after vaccination and that increased frequency of alpha 4 beta 7(+)CD4(+) in the blood after immunization could be used as a predictive marker for the efficacy of vaccine against H pylori infection.
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15.
  • Andres, Sonke, et al. (författare)
  • Type I Restriction-Modification Loci Reveal High Allelic Diversity in Clinical Helicobacter pylori Isolates
  • 2010
  • Ingår i: Helicobacter. - : Wiley. - 1083-4389 .- 1523-5378. ; 15:2, s. 114-125
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: A remarkable variety of restriction-modification (R-M) systems is found in Helicobacter pylori. Since they encompass a large portion of the strain-specific H. pylori genes and therefore contribute to genetic variability, they are suggested to have an impact on disease outcome. Type I R-M systems comprise three different subunits and are the most complex of the three types of R-M systems. Aims: We investigated the genetic diversity and distribution of type I R-M systems in clinical isolates of H. pylori. Material and methods: Sixty-one H. pylori isolates from a Swedish hospital based case-control study and 6 H. pylori isolates of a Swedish population-based study were analyzed using polymerase chain reaction for the presence of the three R-M systems' subunits. Representative gene variants were sequenced. Results: Although the hsdM and hsdR genes appeared conserved in our clinical H. pylori isolates, the sequences of the hsdS loci were highly variable. Despite their sequence diversity, the genes per se were present at high frequencies. We identified a number of novel allelic hsdS variants, which are distinct from corresponding hsdS loci in the sequenced H. pylori strains 26695, J99 and HPAG1. In analyses of paired H. pylori isolates, obtained from the same individuals with a 4-year interval, we observed genetic modifications of hsdS genes in patients with atrophic gastric mucosa. Discussion: We propose that the genetic variability of hsdS genes in a bacterial population will give rise to new specificities of these enzymes, which might lead to adaptation to an ever-changing gastric environment.
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