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Programming the magnitude and persistence of antibody responses with innate immunity

Many successful vaccines induce persistent antibody responses that can last a lifetime. The mechanisms by which they do so remain unclear, but emerging evidence suggests that they activate dendritic cells (DCs) via Toll-like receptors (TLRs)1,2. For example, the yellow fever vaccine YF-17D, one of t...

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Autores principales: Kasturi, Sudhir Pai, Skountzou, Ioanna, Albrecht, Randy A., Koutsonanos, Dimitrios, Hua, Tang, Nakaya, Helder, Ravindran, Rajesh, Stewart, Shelley, Alam, Munir, Kwissa, Marcin, Villinger, Francois, Murthy, Niren, Steel, John, Jacob, Joshy, Hogan, Robert J., García-Sastre, Adolfo, Compans, Richard, Pulendran, Bali
Formato: Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3057367/
https://www.ncbi.nlm.nih.gov/pubmed/21350488
http://dx.doi.org/10.1038/nature09737
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author Kasturi, Sudhir Pai
Skountzou, Ioanna
Albrecht, Randy A.
Koutsonanos, Dimitrios
Hua, Tang
Nakaya, Helder
Ravindran, Rajesh
Stewart, Shelley
Alam, Munir
Kwissa, Marcin
Villinger, Francois
Murthy, Niren
Steel, John
Jacob, Joshy
Hogan, Robert J.
García-Sastre, Adolfo
Compans, Richard
Pulendran, Bali
author_facet Kasturi, Sudhir Pai
Skountzou, Ioanna
Albrecht, Randy A.
Koutsonanos, Dimitrios
Hua, Tang
Nakaya, Helder
Ravindran, Rajesh
Stewart, Shelley
Alam, Munir
Kwissa, Marcin
Villinger, Francois
Murthy, Niren
Steel, John
Jacob, Joshy
Hogan, Robert J.
García-Sastre, Adolfo
Compans, Richard
Pulendran, Bali
author_sort Kasturi, Sudhir Pai
collection PubMed
description Many successful vaccines induce persistent antibody responses that can last a lifetime. The mechanisms by which they do so remain unclear, but emerging evidence suggests that they activate dendritic cells (DCs) via Toll-like receptors (TLRs)1,2. For example, the yellow fever vaccine YF-17D, one of the most successful empiric vaccines ever developed3, activates DCs via multiple TLRs to stimulate pro-inflammatory cytokines4,5. Triggering specific combinations of TLRs in DCs can induce synergistic production of cytokines6, which results in enhanced T cell responses, but its impact on antibody responses remain unknown. Learning the critical parameters of innate immunity that programs such antibody responses remains a major challenge in vaccinology. Here we demonstrate that immunization of mice with synthetic nanoparticles containing antigens plus Toll-like receptor (TLR) ligands 4 + 7 induces synergistic increases in antigen-specific, neutralizing antibodies compared to immunization with a single TLR ligand. Consistent with this there was enhanced persistence of germinal centers (GCs), and of plasma cell responses, which persisted in the lymph nodes for >1.5 years. Surprisingly, there was no enhancement of the early short-lived plasma cell response, relative to that observed with single TLR ligands. Molecular profiling of activated B cells, isolated 7 days after immunization, indicated early programming towards B cell memory. Antibody responses were dependent on direct triggering of both TLRs on B cells and dendritic cells (DCs), as well as on T-cell help. Immunization protected completely against lethal avian and swine influenza virus strains in mice, and induced robust immunity against pandemic H1N1 influenza in rhesus macaques.
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spelling pubmed-30573672011-08-24 Programming the magnitude and persistence of antibody responses with innate immunity Kasturi, Sudhir Pai Skountzou, Ioanna Albrecht, Randy A. Koutsonanos, Dimitrios Hua, Tang Nakaya, Helder Ravindran, Rajesh Stewart, Shelley Alam, Munir Kwissa, Marcin Villinger, Francois Murthy, Niren Steel, John Jacob, Joshy Hogan, Robert J. García-Sastre, Adolfo Compans, Richard Pulendran, Bali Nature Article Many successful vaccines induce persistent antibody responses that can last a lifetime. The mechanisms by which they do so remain unclear, but emerging evidence suggests that they activate dendritic cells (DCs) via Toll-like receptors (TLRs)1,2. For example, the yellow fever vaccine YF-17D, one of the most successful empiric vaccines ever developed3, activates DCs via multiple TLRs to stimulate pro-inflammatory cytokines4,5. Triggering specific combinations of TLRs in DCs can induce synergistic production of cytokines6, which results in enhanced T cell responses, but its impact on antibody responses remain unknown. Learning the critical parameters of innate immunity that programs such antibody responses remains a major challenge in vaccinology. Here we demonstrate that immunization of mice with synthetic nanoparticles containing antigens plus Toll-like receptor (TLR) ligands 4 + 7 induces synergistic increases in antigen-specific, neutralizing antibodies compared to immunization with a single TLR ligand. Consistent with this there was enhanced persistence of germinal centers (GCs), and of plasma cell responses, which persisted in the lymph nodes for >1.5 years. Surprisingly, there was no enhancement of the early short-lived plasma cell response, relative to that observed with single TLR ligands. Molecular profiling of activated B cells, isolated 7 days after immunization, indicated early programming towards B cell memory. Antibody responses were dependent on direct triggering of both TLRs on B cells and dendritic cells (DCs), as well as on T-cell help. Immunization protected completely against lethal avian and swine influenza virus strains in mice, and induced robust immunity against pandemic H1N1 influenza in rhesus macaques. 2011-02-24 /pmc/articles/PMC3057367/ /pubmed/21350488 http://dx.doi.org/10.1038/nature09737 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Kasturi, Sudhir Pai
Skountzou, Ioanna
Albrecht, Randy A.
Koutsonanos, Dimitrios
Hua, Tang
Nakaya, Helder
Ravindran, Rajesh
Stewart, Shelley
Alam, Munir
Kwissa, Marcin
Villinger, Francois
Murthy, Niren
Steel, John
Jacob, Joshy
Hogan, Robert J.
García-Sastre, Adolfo
Compans, Richard
Pulendran, Bali
Programming the magnitude and persistence of antibody responses with innate immunity
title Programming the magnitude and persistence of antibody responses with innate immunity
title_full Programming the magnitude and persistence of antibody responses with innate immunity
title_fullStr Programming the magnitude and persistence of antibody responses with innate immunity
title_full_unstemmed Programming the magnitude and persistence of antibody responses with innate immunity
title_short Programming the magnitude and persistence of antibody responses with innate immunity
title_sort programming the magnitude and persistence of antibody responses with innate immunity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3057367/
https://www.ncbi.nlm.nih.gov/pubmed/21350488
http://dx.doi.org/10.1038/nature09737
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