scholarly journals Current Meningococcal Vaccines: Advantages and Disadvantages and New Challenges

2016 ◽  
Vol 15 (4) ◽  
pp. 64-73 ◽  
Author(s):  
N. N. Kostyukova ◽  
V. A. Bekhalo

The article reviews and analyses the vaccines against invasive meningococcal disease, widely used in practice since 70s-80s of the last century, as well as newly developed ones, the efficacy of which is not completely clear yet. The advantages and disadvantages of polysaccharide and glycoprotein vaccines against meningococci of serogroups A, C, Y, W135 and of protein «vesicle» and geneticengineering vaccines based on «reverse vaccinology» against serogroup B are discussed. Some options for composition of future vaccines under development are presented. Briefly the meningococcal vaccines used in Russia are described. Among the most important immediate tasks discussed are: the study of the duration and intensity of protection after immunization with conjugate vaccines; the development and subsequent trials of a vaccine against serogroup X; further study and improvement of vaccines against serogroup B, as well as the creation of a single vaccine product that protects against all antigenic variants of Neisseria meningitidis.

Author(s):  
Mark McMillan ◽  
Abira Chandrakumar ◽  
Hua Lin Rachael Wang ◽  
Michelle Clarke ◽  
Thomas R Sullivan ◽  
...  

Abstract Background Invasive meningococcal disease (IMD), caused by Neisseria meningitidis, leads to significant morbidity and mortality worldwide. This review aimed to establish the effectiveness of meningococcal vaccines at preventing IMD and N. meningitidis pharyngeal carriage. Methods A search within PubMed, Embase, Scopus, and unpublished studies up to 1st February 2020 was conducted. Results After removal of duplicates, 8565 were screened and 28 studies included. Protection was provided by meningococcal C vaccines for group C IMD (odds ratio (OR) 0·13 [95% CI, 0·07-0·23]), outer membrane vesicle (OMV) vaccines against group B IMD (OR 0·35 [0·25-0·48]), and meningococcal ACWY (MenACWY) vaccines against group ACWY IMD (OR 0·31 [0·20-0·49]). A single time series analysis found a reduction following an infant 4CMenB program (incidence rate ratio, 0·25 [0·19-0·36]). Multivalent MenACWY vaccines did not reduce carriage (relative risk [RR] 0·88 [0·66-1·18]), unlike monovalent A (RR 0·73 [0·61-0·85]), and C vaccines (RR 0·50 [0·26-0·97]). 4CMenB vaccine had no effect on group B carriage (RR 1·12 [0·90-1·40]). There was also no reduction in group B carriage following MenB-FHbp vaccination (RR 0.98 [0.53-1.79]). Conclusions Meningococcal conjugate C, ACWY, and OMV vaccines are effective at reducing IMD. A small number of studies demonstrate that monovalent C and A conjugate vaccines reduce pharyngeal N. meningitidis carriage. There is no evidence of carriage reduction for multivalent MenACWY, OMV, or recombinant meningococcal B vaccines, which has implications for immunisation strategies. Registration PROSPERO CRD42018082085


2013 ◽  
Vol 141 (10) ◽  
pp. 2163-2172 ◽  
Author(s):  
X. SUN ◽  
H. ZHOU ◽  
L. XU ◽  
H. YANG ◽  
Y. GAO ◽  
...  

SUMMARYThe main Neisseria meningitidis adhesion molecules, type IV pili (Tfp) and Neisseria adhesion A (NadA), play important roles in the pathogenesis of invasive meningococcal disease. PilE is the major Tfp subunit. In this study, the prevalence and genetic diversity of pilE and nadA were investigated in the prevalent serogroups and clonal complexes (CC) of N. meningitidis isolated in China. All serogroup A strains belonging to CC1 and CC5 and all CC11 serogroup W135 strains were clustered into class II PilE clades. All serogroup C and most of serogroup B isolates except CC8 and ST5642 were class I PilE clades. Class II pilE sequences were highly conserved. All isolates belonging to class I PilE isolates were nadA negative. However, nadA-positive strains were exclusively found in CC5 and CC11 isolates (class II PilE). This study showed that PilE and NadA may be related to epidemic or endemic meningococcal disease.


2019 ◽  
Vol 25 (1) ◽  
pp. 111.e1-111.e4 ◽  
Author(s):  
P. Stefanelli ◽  
C. Fazio ◽  
P. Vacca ◽  
A. Palmieri ◽  
L. Ambrosio ◽  
...  

2019 ◽  
Vol Volume 12 ◽  
pp. 3169-3188 ◽  
Author(s):  
Irene Rivero-Calle ◽  
Peter Francis Raguindin ◽  
Jose Gómez-Rial ◽  
Carmen Rodriguez-Tenreiro ◽  
Federico Martinón-Torres

mSphere ◽  
2020 ◽  
Vol 5 (2) ◽  
Author(s):  
Sandeep J. Joseph ◽  
Nadav Topaz ◽  
How-Yi Chang ◽  
Melissa J. Whaley ◽  
Jeni T. Vuong ◽  
...  

ABSTRACT In 2015 and 2016, meningococcal carriage evaluations were conducted at two universities in the United States following mass vaccination campaigns in response to Neisseria meningitidis serogroup B (NmB) disease outbreaks. A simultaneous carriage evaluation was also conducted at a university near one of the outbreaks, where no NmB cases were reported and no mass vaccination occurred. A total of ten cross-sectional carriage evaluation rounds were conducted, resulting in 1,514 meningococcal carriage isolates collected from 7,001 unique participants; 1,587 individuals were swabbed at multiple time points (repeat participants). All isolates underwent whole-genome sequencing. The most frequently observed clonal complexes (CC) were CC198 (27.3%), followed by CC1157 (17.4%), CC41/44 (9.8%), CC35 (7.4%), and CC32 (5.6%). Phylogenetic analysis identified carriage isolates that were highly similar to the NmB outbreak strains; comparative genomics between these outbreak and carriage isolates revealed genetic changes in virulence genes. Among repeat participants, 348 individuals carried meningococcal bacteria during at least one carriage evaluation round; 50.3% retained N. meningitidis carriage of a strain with the same sequence type (ST) and CC across rounds, 44.3% only carried N. meningitidis in one round, and 5.4% acquired a new N. meningitidis strain between rounds. Recombination, point mutations, deletions, and simple sequence repeats were the most frequent genetic mechanisms found in isolates collected from hosts carrying a strain of the same ST and CC across rounds. Our findings provide insight on the dynamics of meningococcal carriage among a population that is at higher risk for invasive meningococcal disease than the general population. IMPORTANCE U.S. university students are at a higher risk of invasive meningococcal disease than the general population. The responsible pathogen, Neisseria meningitidis, can be carried asymptomatically in the oropharynx; the dynamics of meningococcal carriage and the genetic features that distinguish carriage versus disease states are not completely understood. Through our analyses, we aimed to provide data to address these topics. We whole-genome sequenced 1,514 meningococcal carriage isolates from individuals at three U.S. universities, two of which underwent mass vaccination campaigns following recent meningococcal outbreaks. We describe the within-host genetic changes among individuals carrying a strain with the same molecular type over time, the primary strains being carried in this population, and the genetic differences between closely related outbreak and carriage strains. Our results provide detailed information on the dynamics of meningococcal carriage and the genetic differences in carriage and outbreak strains, which can inform future efforts to reduce the incidence of invasive meningococcal disease.


2012 ◽  
Vol 194 (18) ◽  
pp. 5144-5145 ◽  
Author(s):  
Sabine Schork ◽  
Andreas Schlüter ◽  
Jochen Blom ◽  
Susanne Schneiker-Bekel ◽  
Alfred Pühler ◽  
...  

ABSTRACTNeisseria meningitidisis a commensal and accidental pathogen exclusively of humans. Although the production of polysaccharide capsules is considered to be essential for meningococcal virulence, there have been reports of constitutively unencapsulated strains causing invasive meningococcal disease (IMD). Here we report the genome sequence of a capsule null locus (cnl) strain of sequence type 198 (ST-198), which is found in half of the reported cases of IMD caused bycnlmeningococcal strains.


Sign in / Sign up

Export Citation Format

Share Document