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Imprinted antibody responses against SARS-CoV-2 Omicron sublineages

SARS-CoV-2 Omicron sublineages carry distinct spike mutations and represent an antigenic shift resulting in escape from antibodies induced by previous infection or vaccination. We show that hybrid immunity or vaccine boosters result in potent plasma neutralizing activity against Omicron BA.1 and BA....

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Autores principales: Park, Young-Jun, Pinto, Dora, Walls, Alexandra C., Liu, Zhuoming, Marco, Anna De, Benigni, Fabio, Zatta, Fabrizia, Silacci-Fregni, Chiara, Bassi, Jessica, Sprouse, Kaitlin R., Addetia, Amin, Bowen, John E., Stewart, Cameron, Giurdanella, Martina, Saliba, Christian, Guarino, Barbara, Schmid, Michael A., Franko, Nicholas, Logue, Jennifer, Dang, Ha V., Hauser, Kevin, Iulio, Julia di, Rivera, William, Schnell, Gretja, Rajesh, Anushka, Zhou, Jiayi, Farhat, Nisar, Kaiser, Hannah, Montiel-Ruiz, Martin, Noack, Julia, Lempp, Florian A., Janer, Javier, Abdelnabi, Rana, Maes, Piet, Ferrari, Paolo, Ceschi, Alessandro, Giannini, Olivier, de Melo, Guilherme Dias, Kergoat, Lauriane, Bourhy, Hervé, Neyts, Johan, Soriaga, Leah, Purcell, Lisa A., Snell, Gyorgy, Whelan, Sean P.J., Lanzavecchia, Antonio, Virgin, Herbert W., Piccoli, Luca, Chu, Helen, Pizzuto, Matteo Samuele, Corti, Davide, Veesler, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9176643/
https://www.ncbi.nlm.nih.gov/pubmed/35677069
http://dx.doi.org/10.1101/2022.05.08.491108
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author Park, Young-Jun
Pinto, Dora
Walls, Alexandra C.
Liu, Zhuoming
Marco, Anna De
Benigni, Fabio
Zatta, Fabrizia
Silacci-Fregni, Chiara
Bassi, Jessica
Sprouse, Kaitlin R.
Addetia, Amin
Bowen, John E.
Stewart, Cameron
Giurdanella, Martina
Saliba, Christian
Guarino, Barbara
Schmid, Michael A.
Franko, Nicholas
Logue, Jennifer
Dang, Ha V.
Hauser, Kevin
Iulio, Julia di
Rivera, William
Schnell, Gretja
Rajesh, Anushka
Zhou, Jiayi
Farhat, Nisar
Kaiser, Hannah
Montiel-Ruiz, Martin
Noack, Julia
Lempp, Florian A.
Janer, Javier
Abdelnabi, Rana
Maes, Piet
Ferrari, Paolo
Ceschi, Alessandro
Giannini, Olivier
de Melo, Guilherme Dias
Kergoat, Lauriane
Bourhy, Hervé
Neyts, Johan
Soriaga, Leah
Purcell, Lisa A.
Snell, Gyorgy
Whelan, Sean P.J.
Lanzavecchia, Antonio
Virgin, Herbert W.
Piccoli, Luca
Chu, Helen
Pizzuto, Matteo Samuele
Corti, Davide
Veesler, David
author_facet Park, Young-Jun
Pinto, Dora
Walls, Alexandra C.
Liu, Zhuoming
Marco, Anna De
Benigni, Fabio
Zatta, Fabrizia
Silacci-Fregni, Chiara
Bassi, Jessica
Sprouse, Kaitlin R.
Addetia, Amin
Bowen, John E.
Stewart, Cameron
Giurdanella, Martina
Saliba, Christian
Guarino, Barbara
Schmid, Michael A.
Franko, Nicholas
Logue, Jennifer
Dang, Ha V.
Hauser, Kevin
Iulio, Julia di
Rivera, William
Schnell, Gretja
Rajesh, Anushka
Zhou, Jiayi
Farhat, Nisar
Kaiser, Hannah
Montiel-Ruiz, Martin
Noack, Julia
Lempp, Florian A.
Janer, Javier
Abdelnabi, Rana
Maes, Piet
Ferrari, Paolo
Ceschi, Alessandro
Giannini, Olivier
de Melo, Guilherme Dias
Kergoat, Lauriane
Bourhy, Hervé
Neyts, Johan
Soriaga, Leah
Purcell, Lisa A.
Snell, Gyorgy
Whelan, Sean P.J.
Lanzavecchia, Antonio
Virgin, Herbert W.
Piccoli, Luca
Chu, Helen
Pizzuto, Matteo Samuele
Corti, Davide
Veesler, David
author_sort Park, Young-Jun
collection PubMed
description SARS-CoV-2 Omicron sublineages carry distinct spike mutations and represent an antigenic shift resulting in escape from antibodies induced by previous infection or vaccination. We show that hybrid immunity or vaccine boosters result in potent plasma neutralizing activity against Omicron BA.1 and BA.2 and that breakthrough infections, but not vaccination-only, induce neutralizing activity in the nasal mucosa. Consistent with immunological imprinting, most antibodies derived from memory B cells or plasma cells of Omicron breakthrough cases cross-react with the Wuhan-Hu-1, BA.1 and BA.2 receptor-binding domains whereas Omicron primary infections elicit B cells of narrow specificity. While most clinical antibodies have reduced neutralization of Omicron, we identified an ultrapotent pan-variant antibody, that is unaffected by any Omicron lineage spike mutations and is a strong candidate for clinical development.
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spelling pubmed-91766432022-12-15 Imprinted antibody responses against SARS-CoV-2 Omicron sublineages Park, Young-Jun Pinto, Dora Walls, Alexandra C. Liu, Zhuoming Marco, Anna De Benigni, Fabio Zatta, Fabrizia Silacci-Fregni, Chiara Bassi, Jessica Sprouse, Kaitlin R. Addetia, Amin Bowen, John E. Stewart, Cameron Giurdanella, Martina Saliba, Christian Guarino, Barbara Schmid, Michael A. Franko, Nicholas Logue, Jennifer Dang, Ha V. Hauser, Kevin Iulio, Julia di Rivera, William Schnell, Gretja Rajesh, Anushka Zhou, Jiayi Farhat, Nisar Kaiser, Hannah Montiel-Ruiz, Martin Noack, Julia Lempp, Florian A. Janer, Javier Abdelnabi, Rana Maes, Piet Ferrari, Paolo Ceschi, Alessandro Giannini, Olivier de Melo, Guilherme Dias Kergoat, Lauriane Bourhy, Hervé Neyts, Johan Soriaga, Leah Purcell, Lisa A. Snell, Gyorgy Whelan, Sean P.J. Lanzavecchia, Antonio Virgin, Herbert W. Piccoli, Luca Chu, Helen Pizzuto, Matteo Samuele Corti, Davide Veesler, David bioRxiv Article SARS-CoV-2 Omicron sublineages carry distinct spike mutations and represent an antigenic shift resulting in escape from antibodies induced by previous infection or vaccination. We show that hybrid immunity or vaccine boosters result in potent plasma neutralizing activity against Omicron BA.1 and BA.2 and that breakthrough infections, but not vaccination-only, induce neutralizing activity in the nasal mucosa. Consistent with immunological imprinting, most antibodies derived from memory B cells or plasma cells of Omicron breakthrough cases cross-react with the Wuhan-Hu-1, BA.1 and BA.2 receptor-binding domains whereas Omicron primary infections elicit B cells of narrow specificity. While most clinical antibodies have reduced neutralization of Omicron, we identified an ultrapotent pan-variant antibody, that is unaffected by any Omicron lineage spike mutations and is a strong candidate for clinical development. Cold Spring Harbor Laboratory 2022-08-22 /pmc/articles/PMC9176643/ /pubmed/35677069 http://dx.doi.org/10.1101/2022.05.08.491108 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Park, Young-Jun
Pinto, Dora
Walls, Alexandra C.
Liu, Zhuoming
Marco, Anna De
Benigni, Fabio
Zatta, Fabrizia
Silacci-Fregni, Chiara
Bassi, Jessica
Sprouse, Kaitlin R.
Addetia, Amin
Bowen, John E.
Stewart, Cameron
Giurdanella, Martina
Saliba, Christian
Guarino, Barbara
Schmid, Michael A.
Franko, Nicholas
Logue, Jennifer
Dang, Ha V.
Hauser, Kevin
Iulio, Julia di
Rivera, William
Schnell, Gretja
Rajesh, Anushka
Zhou, Jiayi
Farhat, Nisar
Kaiser, Hannah
Montiel-Ruiz, Martin
Noack, Julia
Lempp, Florian A.
Janer, Javier
Abdelnabi, Rana
Maes, Piet
Ferrari, Paolo
Ceschi, Alessandro
Giannini, Olivier
de Melo, Guilherme Dias
Kergoat, Lauriane
Bourhy, Hervé
Neyts, Johan
Soriaga, Leah
Purcell, Lisa A.
Snell, Gyorgy
Whelan, Sean P.J.
Lanzavecchia, Antonio
Virgin, Herbert W.
Piccoli, Luca
Chu, Helen
Pizzuto, Matteo Samuele
Corti, Davide
Veesler, David
Imprinted antibody responses against SARS-CoV-2 Omicron sublineages
title Imprinted antibody responses against SARS-CoV-2 Omicron sublineages
title_full Imprinted antibody responses against SARS-CoV-2 Omicron sublineages
title_fullStr Imprinted antibody responses against SARS-CoV-2 Omicron sublineages
title_full_unstemmed Imprinted antibody responses against SARS-CoV-2 Omicron sublineages
title_short Imprinted antibody responses against SARS-CoV-2 Omicron sublineages
title_sort imprinted antibody responses against sars-cov-2 omicron sublineages
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9176643/
https://www.ncbi.nlm.nih.gov/pubmed/35677069
http://dx.doi.org/10.1101/2022.05.08.491108
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