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Published on: November 5, 2019
Can we control all-cause meningococcal disease in Europe?
1Oxford Vaccine Group, Department of Paediatrics, University of Oxford and NIHR Biomedical Research Centre, Oxford University Hospitals NHS Foundation Trust, Oxford, UK.
Abstract:
Invasive disease caused by Neisseria meningitidis is potentially devastating, with a case fatality rate of 5-15% and high rates of significant sequelae among survivors after septicaemia or meningitis. Capsular group C (MenC) conjugate vaccines have been highly successful in achieving control of MenC disease across Europe, and some countries have also introduced quadrivalent MenACWY conjugate vaccines to reduce disease caused by groups A, W and Y in addition to C. These vaccines putatively elicit protective levels of bactericidal antibodies in all age groups, induce immunologic memory and reduce nasopharyngeal carriage, thereby leading to herd protection. Protein-based meningococcal vaccines based on subcapsular components, and designed primarily to target capsular group B (MenB) disease, have recently been licensed. These vaccines are highly immunogenic in infants and adolescents, inducing bactericidal antibodies against strains expressing high levels of vaccine antigens which are identical to the variants present in the vaccines. Effectiveness of these vaccines at a population level will be determined by whether vaccine-induced antibodies provide cross-protection against variants of the vaccine antigens present on the surface of the diverse collection of circulating invasive strains. The level of serum bactericidal activity induced against strains also seems to depend on the level of expression of the vaccine antigens. The duration of protection and the impact on carriage of meningococci will have a major bearing on the overall effectiveness of the programme. In September 2015 the UK became the first country to introduce the multicomponent meningococcal serogroup B vaccine (4CMenB) into a national routine immunization schedule, and data on the effectiveness of this programme are anticipated in the next few years.
Insights
New meningococcal vaccines show promise against invasive bacterial disease. While MenC and MenACWY vaccines control specific strains, novel protein-based vaccines target meningococcal B (MenB) disease, with population-level effectiveness pending further data.
Area of Science:
- Microbiology
- Immunology
- Vaccinology
Background:
- Invasive Neisseria meningitidis causes severe disease, including meningitis and septicaemia, with significant mortality and long-term sequelae.
- Existing meningococcal vaccines (MenC, MenACWY) have controlled specific serogroups, but serogroup B remains a challenge.
- Recent advancements include protein-based vaccines targeting meningococcal B (MenB) disease.
Purpose of the Study:
- To review the development and potential impact of new meningococcal vaccines, particularly protein-based MenB vaccines.
- To discuss the immunogenicity, potential for cross-protection, and factors influencing the effectiveness of these novel vaccines.
- To highlight the introduction of the 4-component meningococcal B vaccine (4CMenB) in the UK's routine immunization schedule.
Main Methods:
- Review of existing literature on meningococcal vaccines and invasive meningococcal disease.
- Analysis of vaccine-induced immune responses, including bactericidal antibody levels.
- Discussion of factors affecting population-level vaccine effectiveness, such as herd protection and duration of immunity.
Main Results:
- Protein-based MenB vaccines are immunogenic in infants and adolescents, inducing bactericidal antibodies against vaccine-matched strains.
- Vaccine effectiveness depends on cross-protection against diverse circulating meningococcal strains and antigen expression levels.
- The UK introduced the 4CMenB vaccine in 2015, with effectiveness data anticipated.
Conclusions:
- Novel protein-based MenB vaccines represent a significant advancement in controlling meningococcal disease.
- Further data are needed to fully assess the long-term effectiveness, duration of protection, and impact on carriage of MenB vaccines.
- Continued surveillance and research are crucial for optimizing meningococcal vaccination strategies.
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