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High coverage of diverse invasive meningococcal serogroup B strains by the 4-component vaccine 4CMenB in Australia, 2007–2011: Concordant predictions between MATS and genetic MATS

Meningococcal serogroup B (MenB) accounts for an important proportion of invasive meningococcal disease (IMD). The 4-component vaccine against MenB (4CMenB) is composed of factor H binding protein (fHbp), neisserial heparin-binding antigen (NHBA), Neisseria adhesin A (NadA), and outer membrane vesic...

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Autores principales: Tozer, Sarah J., Smith, Helen V., Whiley, David M., Borrow, Ray, Boccadifuoco, Giuseppe, Medini, Duccio, Serruto, Davide, Giuliani, Marzia Monica, Stella, Maria, De Paola, Rosita, Muzzi, Alessandro, Pizza, Mariagrazia, Sloots, Theo P., Nissen, Michael D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8381844/
https://www.ncbi.nlm.nih.gov/pubmed/33847225
http://dx.doi.org/10.1080/21645515.2021.1904758
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author Tozer, Sarah J.
Smith, Helen V.
Whiley, David M.
Borrow, Ray
Boccadifuoco, Giuseppe
Medini, Duccio
Serruto, Davide
Giuliani, Marzia Monica
Stella, Maria
De Paola, Rosita
Muzzi, Alessandro
Pizza, Mariagrazia
Sloots, Theo P.
Nissen, Michael D.
author_facet Tozer, Sarah J.
Smith, Helen V.
Whiley, David M.
Borrow, Ray
Boccadifuoco, Giuseppe
Medini, Duccio
Serruto, Davide
Giuliani, Marzia Monica
Stella, Maria
De Paola, Rosita
Muzzi, Alessandro
Pizza, Mariagrazia
Sloots, Theo P.
Nissen, Michael D.
author_sort Tozer, Sarah J.
collection PubMed
description Meningococcal serogroup B (MenB) accounts for an important proportion of invasive meningococcal disease (IMD). The 4-component vaccine against MenB (4CMenB) is composed of factor H binding protein (fHbp), neisserial heparin-binding antigen (NHBA), Neisseria adhesin A (NadA), and outer membrane vesicles of the New Zealand strain with Porin 1.4. A meningococcal antigen typing system (MATS) and a fully genomic approach, genetic MATS (gMATS), were developed to predict coverage of MenB strains by 4CMenB. We characterized 520 MenB invasive disease isolates collected over a 5-year period (January 2007–December 2011) from all Australian states/territories by multilocus sequence typing and estimated strain coverage by 4CMenB. The clonal complexes most frequently identified were ST-41/44 CC/Lineage 3 (39.4%) and ST-32 CC/ET-5 CC (23.7%). The overall MATS predicted coverage was 74.6% (95% coverage interval: 61.1%–85.6%). The overall gMATS prediction was 81.0% (lower–upper limit: 75.0–86.9%), showing 91.5% accuracy compared with MATS. Overall, 23.7% and 13.1% (MATS) and 26.0% and 14.0% (gMATS) of isolates were covered by at least 2 and 3 vaccine antigens, respectively, with fHbp and NHBA contributing the most to coverage. When stratified by year of isolate collection, state/territory and age group, MATS and gMATS strain coverage predictions were consistent across all strata. The high coverage predicted by MATS and gMATS indicates that 4CMenB vaccination may have an impact on the burden of MenB-caused IMD in Australia. gMATS can be used in the future to monitor variations in 4CMenB strain coverage over time and geographical areas even for non-culture confirmed IMD cases.
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spelling pubmed-83818442021-08-24 High coverage of diverse invasive meningococcal serogroup B strains by the 4-component vaccine 4CMenB in Australia, 2007–2011: Concordant predictions between MATS and genetic MATS Tozer, Sarah J. Smith, Helen V. Whiley, David M. Borrow, Ray Boccadifuoco, Giuseppe Medini, Duccio Serruto, Davide Giuliani, Marzia Monica Stella, Maria De Paola, Rosita Muzzi, Alessandro Pizza, Mariagrazia Sloots, Theo P. Nissen, Michael D. Hum Vaccin Immunother Research Paper Meningococcal serogroup B (MenB) accounts for an important proportion of invasive meningococcal disease (IMD). The 4-component vaccine against MenB (4CMenB) is composed of factor H binding protein (fHbp), neisserial heparin-binding antigen (NHBA), Neisseria adhesin A (NadA), and outer membrane vesicles of the New Zealand strain with Porin 1.4. A meningococcal antigen typing system (MATS) and a fully genomic approach, genetic MATS (gMATS), were developed to predict coverage of MenB strains by 4CMenB. We characterized 520 MenB invasive disease isolates collected over a 5-year period (January 2007–December 2011) from all Australian states/territories by multilocus sequence typing and estimated strain coverage by 4CMenB. The clonal complexes most frequently identified were ST-41/44 CC/Lineage 3 (39.4%) and ST-32 CC/ET-5 CC (23.7%). The overall MATS predicted coverage was 74.6% (95% coverage interval: 61.1%–85.6%). The overall gMATS prediction was 81.0% (lower–upper limit: 75.0–86.9%), showing 91.5% accuracy compared with MATS. Overall, 23.7% and 13.1% (MATS) and 26.0% and 14.0% (gMATS) of isolates were covered by at least 2 and 3 vaccine antigens, respectively, with fHbp and NHBA contributing the most to coverage. When stratified by year of isolate collection, state/territory and age group, MATS and gMATS strain coverage predictions were consistent across all strata. The high coverage predicted by MATS and gMATS indicates that 4CMenB vaccination may have an impact on the burden of MenB-caused IMD in Australia. gMATS can be used in the future to monitor variations in 4CMenB strain coverage over time and geographical areas even for non-culture confirmed IMD cases. Taylor & Francis 2021-04-13 /pmc/articles/PMC8381844/ /pubmed/33847225 http://dx.doi.org/10.1080/21645515.2021.1904758 Text en © 2021 GlaxoSmithKline Biologicals S.A. Published with license by Taylor & Francis Group, LLC. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Tozer, Sarah J.
Smith, Helen V.
Whiley, David M.
Borrow, Ray
Boccadifuoco, Giuseppe
Medini, Duccio
Serruto, Davide
Giuliani, Marzia Monica
Stella, Maria
De Paola, Rosita
Muzzi, Alessandro
Pizza, Mariagrazia
Sloots, Theo P.
Nissen, Michael D.
High coverage of diverse invasive meningococcal serogroup B strains by the 4-component vaccine 4CMenB in Australia, 2007–2011: Concordant predictions between MATS and genetic MATS
title High coverage of diverse invasive meningococcal serogroup B strains by the 4-component vaccine 4CMenB in Australia, 2007–2011: Concordant predictions between MATS and genetic MATS
title_full High coverage of diverse invasive meningococcal serogroup B strains by the 4-component vaccine 4CMenB in Australia, 2007–2011: Concordant predictions between MATS and genetic MATS
title_fullStr High coverage of diverse invasive meningococcal serogroup B strains by the 4-component vaccine 4CMenB in Australia, 2007–2011: Concordant predictions between MATS and genetic MATS
title_full_unstemmed High coverage of diverse invasive meningococcal serogroup B strains by the 4-component vaccine 4CMenB in Australia, 2007–2011: Concordant predictions between MATS and genetic MATS
title_short High coverage of diverse invasive meningococcal serogroup B strains by the 4-component vaccine 4CMenB in Australia, 2007–2011: Concordant predictions between MATS and genetic MATS
title_sort high coverage of diverse invasive meningococcal serogroup b strains by the 4-component vaccine 4cmenb in australia, 2007–2011: concordant predictions between mats and genetic mats
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8381844/
https://www.ncbi.nlm.nih.gov/pubmed/33847225
http://dx.doi.org/10.1080/21645515.2021.1904758
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