Recent progress in the prevention of serogroup B meningococcal disease

The widespread use of meningococcal polysaccharide conjugate vaccines has highlighted the challenge of providing protection against serogroup B disease. Over a period of four decades vaccine development has focused on sub-capsular, protein antigens, first with outer membrane vesicle (OMV) vaccines a...

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Bibliografski detalji
Glavni autori: Feavers, I, Maiden, M
Format: Journal article
Izdano: American Society for Microbiology 2017
Opis
Sažetak:The widespread use of meningococcal polysaccharide conjugate vaccines has highlighted the challenge of providing protection against serogroup B disease. Over a period of four decades vaccine development has focused on sub-capsular, protein antigens, first with outer membrane vesicle (OMV) vaccines against epidemic outbreaks, and more recently on new multicomponent vaccines designed to offer better cross-protection against the antigenically diverse strains responsible for endemic disease. Because of the low incidence of meningococcal disease, the protective efficacy of these vaccines has not been determined in clinical studies and their licensure has been based on serological data; however, the serological assays used to predict protective coverage have limitations. As a result, evidence of the effectiveness of these vaccines against different strains and the contribution of specific antigens to protection can only be provided by epidemiological analyses following their implementation in sufficiently large populations. The recent inclusion of the 4CMenB vaccine, Bexsero®, in the infant immunization program in the UK has provided preliminary evidence that the vaccine is effective. On-going surveillance will provide valuable data on its longer-term impact and antigenic coverage. Further development of protein-based vaccines against meningococcal disease is anticipated to improve antigenic coverage and adjust to changes in circulating strains. At the same time, alternative immunization strategies may be explored to improve overall vaccine effectiveness by, for example, protecting the youngest infants or providing herd protection.