Serogroup B meningococcal disease remains a serious problem in many countries and no effective vaccine is currently available. Immunological and epidemiological evidence suggests that carriage of commensal Neisseria species is involved in the development of natural immunity against meningococcal disease. Neisseria lactamica has many surface structures in common with Neisseria meningitidis and may be the most important of these species. We have produced extensive pre-clinical data, which indicate that N. lactamica outer membrane vesicles (OMVs) may provide a vaccine effective against diverse disease-causing meningococcal strains. Immunisation with N. lactamica OMVs protected against lethal challenge with diverse meningococcal isolates in a mouse intraperitoneal challenge model of meningococcal disease and we are developing this vaccine for use in a phase I safety and immunogenicity study in adult volunteers. We have shown that OMVs produced from bacteria grown under iron-limited or iron-rich conditions provide equivalent protection in the mouse infection model and thus OMVs produced from iron-rich will be used. Sterile filtration of N. lactamica OMVs has proved difficult but this has been improved by resuspending the vesicles in a buffer, which increases their surface zeta potential. The vaccine is currently being manufactured and validated ELISA protocols have been developed for the analysis of serological responses.
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http://dx.doi.org/10.1016/j.vaccine.2005.01.055 | DOI Listing |
PLoS One
January 2025
School of Mathematics, Manchester University, Manchester, United Kingdom.
The genus Neisseria includes two major human pathogens: N. meningitidis causing bacterial meningitis/septicemia and N. gonorrhoeae causing gonorrhoea.
View Article and Find Full Text PDFChina CDC Wkly
December 2024
National Key Laboratory of Intelligent Tracking and Forecasting for Infectious Diseases (NITFID), National Immunization Program, Chinese Center for Disease Control and Prevention, Beijing, China.
What Is Already Known About This Topic?: From 2010 to 2012, the incidence of adverse vaccine reactions from meningococcal vaccine (MenV) in China ranged from 8.46 to 56.30 per 100,000 doses.
View Article and Find Full Text PDFSci Rep
December 2024
Centre Suisse de Recherches Scientifiques en Côte d'Ivoire (CSRS), Abidjan, Côte d'Ivoire.
The respiratory tract harbours microorganisms of the normal host microbiota which are also capable of causing invasive disease. Among these, Neisseria meningitidis a commensal bacterium of the oropharynx can cause meningitis, a disease with epidemic potential. The oral microbiome plays a crucial role in maintaining respiratory health.
View Article and Find Full Text PDFEpidemiol Mikrobiol Imunol
December 2024
Invasive meningococcal diseases (IMD) caused by Neisseria meningitidis are generally rare. They affect mostly selected age categories and risk groups of patients (in terms of age, comorbidities, or applied therapy), and the immune system and its defects may play an important modifying role. Meningococcal infections could be the first and only clinical sign of unrecognised immunodeficiency.
View Article and Find Full Text PDFBackground: A MenABCWY vaccine containing 4CMenB and MenACWY-CRM vaccine components has been developed to protect against the five meningococcal serogroups that cause most invasive disease cases.
Methods: In this phase 3 study (NCT04707391), healthy participants aged 15-25 years, who had received MenACWY vaccination ≥4 years previously, were randomized (1:1) to receive two MenABCWY doses six months apart or one MenACWY-CRM dose. Primary objectives were to demonstrate the non-inferiority of MenABCWY 1 month post-vaccination versus MenACWY-CRM, with a lower limit of 2-sided 95% confidence interval above -10% for group differences in 4-fold rise in human serum bactericidal antibody (hSBA) titers against serogroups ACWY, and to evaluate reactogenicity and safety.
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