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Long-Term Analysis of Pertussis Vaccine Immunity to Identify Potential Markers of Vaccine-Induced Memory Associated With Whole Cell But Not Acellular Pertussis Immunization in Mice

Over two decades ago acellular pertussis vaccines (aP) replaced whole cell pertussis vaccines (wP) in several countries. Since then, a resurgence in pertussis has been observed, which is hypothesized to be linked, in part, to waning immunity. To better understand why waning immunity occurs, we devel...

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Autores principales: Weaver, Kelly L., Blackwood, Catherine B., Horspool, Alexander M., Pyles, Gage M., Sen-Kilic, Emel, Grayson, Emily M., Huckaby, Annalisa B., Witt, William T., DeJong, Megan A., Wolf, M. Allison, Damron, F. Heath, Barbier, Mariette
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8861382/
https://www.ncbi.nlm.nih.gov/pubmed/35211125
http://dx.doi.org/10.3389/fimmu.2022.838504
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author Weaver, Kelly L.
Blackwood, Catherine B.
Horspool, Alexander M.
Pyles, Gage M.
Sen-Kilic, Emel
Grayson, Emily M.
Huckaby, Annalisa B.
Witt, William T.
DeJong, Megan A.
Wolf, M. Allison
Damron, F. Heath
Barbier, Mariette
author_facet Weaver, Kelly L.
Blackwood, Catherine B.
Horspool, Alexander M.
Pyles, Gage M.
Sen-Kilic, Emel
Grayson, Emily M.
Huckaby, Annalisa B.
Witt, William T.
DeJong, Megan A.
Wolf, M. Allison
Damron, F. Heath
Barbier, Mariette
author_sort Weaver, Kelly L.
collection PubMed
description Over two decades ago acellular pertussis vaccines (aP) replaced whole cell pertussis vaccines (wP) in several countries. Since then, a resurgence in pertussis has been observed, which is hypothesized to be linked, in part, to waning immunity. To better understand why waning immunity occurs, we developed a long-term outbred CD1 mouse model to conduct the longest murine pertussis vaccine studies to date, spanning out to 532 days post primary immunization. Vaccine-induced memory results from follicular responses and germinal center formation; therefore, cell populations and cytokines involved with memory were measured alongside protection from challenge. Both aP and wP immunization elicit protection from intranasal challenge by decreasing bacterial burden in both the upper and lower airways, and by generation of pertussis specific antibody responses in mice. Responses to wP vaccination were characterized by a significant increase in T follicular helper cells in the draining lymph nodes and CXCL13 levels in sera compared to aP mice. In addition, a population of B. pertussis (+) memory B cells was found to be unique to wP vaccinated mice. This population peaked post-boost, and was measurable out to day 365 post-vaccination. Anti-B. pertussis and anti-pertussis toxoid antibody secreting cells increased one day after boost and remained high at day 532. The data suggest that follicular responses, and in particular CXCL13 levels in sera, could be monitored in pre-clinical and clinical studies for the development of the next-generation pertussis vaccines.
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spelling pubmed-88613822022-02-23 Long-Term Analysis of Pertussis Vaccine Immunity to Identify Potential Markers of Vaccine-Induced Memory Associated With Whole Cell But Not Acellular Pertussis Immunization in Mice Weaver, Kelly L. Blackwood, Catherine B. Horspool, Alexander M. Pyles, Gage M. Sen-Kilic, Emel Grayson, Emily M. Huckaby, Annalisa B. Witt, William T. DeJong, Megan A. Wolf, M. Allison Damron, F. Heath Barbier, Mariette Front Immunol Immunology Over two decades ago acellular pertussis vaccines (aP) replaced whole cell pertussis vaccines (wP) in several countries. Since then, a resurgence in pertussis has been observed, which is hypothesized to be linked, in part, to waning immunity. To better understand why waning immunity occurs, we developed a long-term outbred CD1 mouse model to conduct the longest murine pertussis vaccine studies to date, spanning out to 532 days post primary immunization. Vaccine-induced memory results from follicular responses and germinal center formation; therefore, cell populations and cytokines involved with memory were measured alongside protection from challenge. Both aP and wP immunization elicit protection from intranasal challenge by decreasing bacterial burden in both the upper and lower airways, and by generation of pertussis specific antibody responses in mice. Responses to wP vaccination were characterized by a significant increase in T follicular helper cells in the draining lymph nodes and CXCL13 levels in sera compared to aP mice. In addition, a population of B. pertussis (+) memory B cells was found to be unique to wP vaccinated mice. This population peaked post-boost, and was measurable out to day 365 post-vaccination. Anti-B. pertussis and anti-pertussis toxoid antibody secreting cells increased one day after boost and remained high at day 532. The data suggest that follicular responses, and in particular CXCL13 levels in sera, could be monitored in pre-clinical and clinical studies for the development of the next-generation pertussis vaccines. Frontiers Media S.A. 2022-02-08 /pmc/articles/PMC8861382/ /pubmed/35211125 http://dx.doi.org/10.3389/fimmu.2022.838504 Text en Copyright © 2022 Weaver, Blackwood, Horspool, Pyles, Sen-Kilic, Grayson, Huckaby, Witt, DeJong, Wolf, Damron and Barbier https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Weaver, Kelly L.
Blackwood, Catherine B.
Horspool, Alexander M.
Pyles, Gage M.
Sen-Kilic, Emel
Grayson, Emily M.
Huckaby, Annalisa B.
Witt, William T.
DeJong, Megan A.
Wolf, M. Allison
Damron, F. Heath
Barbier, Mariette
Long-Term Analysis of Pertussis Vaccine Immunity to Identify Potential Markers of Vaccine-Induced Memory Associated With Whole Cell But Not Acellular Pertussis Immunization in Mice
title Long-Term Analysis of Pertussis Vaccine Immunity to Identify Potential Markers of Vaccine-Induced Memory Associated With Whole Cell But Not Acellular Pertussis Immunization in Mice
title_full Long-Term Analysis of Pertussis Vaccine Immunity to Identify Potential Markers of Vaccine-Induced Memory Associated With Whole Cell But Not Acellular Pertussis Immunization in Mice
title_fullStr Long-Term Analysis of Pertussis Vaccine Immunity to Identify Potential Markers of Vaccine-Induced Memory Associated With Whole Cell But Not Acellular Pertussis Immunization in Mice
title_full_unstemmed Long-Term Analysis of Pertussis Vaccine Immunity to Identify Potential Markers of Vaccine-Induced Memory Associated With Whole Cell But Not Acellular Pertussis Immunization in Mice
title_short Long-Term Analysis of Pertussis Vaccine Immunity to Identify Potential Markers of Vaccine-Induced Memory Associated With Whole Cell But Not Acellular Pertussis Immunization in Mice
title_sort long-term analysis of pertussis vaccine immunity to identify potential markers of vaccine-induced memory associated with whole cell but not acellular pertussis immunization in mice
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8861382/
https://www.ncbi.nlm.nih.gov/pubmed/35211125
http://dx.doi.org/10.3389/fimmu.2022.838504
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