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Comparison of GMMA and glycoconjugate four-component formulations in animals. | LitMetric

AI Article Synopsis

  • - Shigellosis is a common cause of diarrhea, especially in young children in low- and middle-income countries, with rising cases linked to antibiotic resistance, and there are currently no licensed vaccines.
  • - Researchers are testing a new 4-component GMMA vaccine candidate in a clinical trial to see if it can provide broader protection against prevalent Shigella serotypes, comparing its effectiveness to traditional glycoconjugate vaccines in animal models.
  • - Results show that the GMMA vaccine induces stronger antibody responses and bactericidal activity than traditional options, suggesting it may be more effective, but further studies are needed to see if these findings hold true in humans.

Article Abstract

Shigellosis is leading bacterial cause of diarrhea with high prevalence in children younger than 5 years in low- and middle-income countries, and increasing number of reports of cases associated to anti-microbial resistance. No vaccines against are still licensed, but different candidates based on the O-antigen portion of lipopolysaccharides are in clinic. Generalized Modules for Membrane Antigens (GMMA) have been proposed as an alternative delivery system for the O-antigen, and a 4-component vaccine candidate (altSonflex1-2-3), containing GMMA from and 1b, 2a and 3a is being tested in a phase 1/2 clinical trial, with the aim to elicit broad protection against the most prevalent serotypes. Here, the 4-component GMMA vaccine candidate has been compared to a more traditional glycoconjugate formulation for the ability to induce functional antibodies in mice and rabbits. In mice, in the absence of Alhydrogel, GMMA induce higher IgG antibodies than glycoconjugates and stronger bactericidal titers against all serotypes. In the presence of Alhydrogel, GMMA induce O-antigen specific IgG levels similar to traditional glycoconjugates, but with a broader range of IgG subclasses, resulting in stronger bactericidal activity. In rabbits, GMMA elicit higher functional antibodies than glycoconjugates against , and similar responses to 1b, 2a and 3a, independently from the presence of Alhydrogel. Different O-antigen based vaccines against are now in clinical stage and it will be of particular interest to understand how the preclinical findings in the different animal models translate in humans.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10690372PMC
http://dx.doi.org/10.3389/fmolb.2023.1284515DOI Listing

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