Completed Infection & Immunity Genetics & Molecular Biology

Gonococcal vaccine initiative

In plain English

AI plain-English summary

Gonorrhoea is rapidly becoming untreatable as the bacterium that causes it develops resistance to nearly every antibiotic thrown at it. This matters because *Neisseria gonorrhoeae* infects tens of millions of people worldwide each year and also makes them more vulnerable to HIV. Despite decades of effort, no vaccine exists. The researchers plan to change that by exploiting a recent, unexpected clue: a vaccine against a related bacterium, *Neisseria meningitidis*, appears to offer some cross-protection against gonorrhoea. They will run a clinical trial using that existing vaccine as a probe to identify which surface proteins on the gonorrhoea bacterium trigger a protective immune response in humans. They will then check how common and stable those proteins are across thousands of bacterial genomes, engineer improved versions of the proteins, and test the best candidates in a mouse model. If successful, this work would deliver a set of validated vaccine components ready for human trials. A gonorrhoea vaccine would be a practical tool for sexual health clinics, reducing infection rates and slowing the spread of drug-resistant strains. It would also lower HIV transmission in populations where both infections are common.

View original technical description
Neisseria gonorrhoeae (Ng), a leading cause of STI and co-factor for HIV transmission, has developed extensive antimicrobial resistance. Therefore innovative measures to combat Ng are urgently required. While vaccines have been remarkably effective for preventing bacterial infection, there has been scant progress towards Ng vaccines. However, recent advances provide the first prospects for success in decades. We will exploit these advances and our expertise to validate effective antigens for inclusion in a gonococcal vaccine through five related aims. We will :- 1) identify Ng antigens through a clinical trial of an outer membrane vesicle (OMV)-containing vaccine from Neisseria meningitidis as an immunological probe in an Ng-exposed population, 2) define the conservation and distribution of Ng antigens by interrogating our genomic database of Ng, 3) generate lead candidates (exploiting their atomic structures and variation) and produce engineered OMVs which will be characterised by state-of-the-art proteomics, 4) evaluate the immunogenicity and protective efficacy of our candidates in the murine model of Ng infection, and examine cellular and serological responses, and 5) refine and combine antigens to deliver pre-clinical validation for effective Ng vaccines, and derive correlates of protection for this important pathogen.

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Researchers

Ann Jerse (EPMC Awardee)Ian Michael Feavers (EPMC Awardee)Jeremy Derrick (EPMC Awardee)Martin Maiden (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Phase 1 first-in-human study of a gonococcal outer membrane vesicle vaccine to prevent gonorrhoea and reduce antimicrobial resistance
Plant-based production of a vaccine against gonorrhoea
Development of a cost-effective protein-based combined glycoconjugate meningococcal-pneumococcal vaccine
Development and testing of novel recombinant pnemococcal glyconjugate vaccines
MenSynVac Study

Original classification

Collaborative Award in Science

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