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High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines

Knowledge of the mechanisms underpinning the development of protective immunity conferred by mRNA vaccines is fragmentary. Here, we investigated responses to coronavirus disease 2019 (COVID-19) mRNA vaccination via high–temporal resolution blood transcriptome profiling. The first vaccine dose elicit...

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Autores principales: Rinchai, Darawan, Deola, Sara, Zoppoli, Gabriele, Kabeer, Basirudeen Syed Ahamed, Taleb, Sara, Pavlovski, Igor, Maacha, Selma, Gentilcore, Giusy, Toufiq, Mohammed, Mathew, Lisa, Liu, Li, Vempalli, Fazulur Rehaman, Mubarak, Ghada, Lorenz, Stephan, Sivieri, Irene, Cirmena, Gabriella, Dentone, Chiara, Cuccarolo, Paola, Giacobbe, Daniele Roberto, Baldi, Federico, Garbarino, Alberto, Cigolini, Benedetta, Cremonesi, Paolo, Bedognetti, Michele, Ballestrero, Alberto, Bassetti, Matteo, Hejblum, Boris P., Augustine, Tracy, Van Panhuys, Nicholas, Thiebaut, Rodolphe, Branco, Ricardo, Chew, Tracey, Shojaei, Maryam, Short, Kirsty, Feng, Carl G., Zughaier, Susu M., De Maria, Andrea, Tang, Benjamin, Ait Hssain, Ali, Bedognetti, Davide, Grivel, Jean-Charles, Chaussabel, Damien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9651857/
https://www.ncbi.nlm.nih.gov/pubmed/36367935
http://dx.doi.org/10.1126/sciadv.abp9961
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author Rinchai, Darawan
Deola, Sara
Zoppoli, Gabriele
Kabeer, Basirudeen Syed Ahamed
Taleb, Sara
Pavlovski, Igor
Maacha, Selma
Gentilcore, Giusy
Toufiq, Mohammed
Mathew, Lisa
Liu, Li
Vempalli, Fazulur Rehaman
Mubarak, Ghada
Lorenz, Stephan
Sivieri, Irene
Cirmena, Gabriella
Dentone, Chiara
Cuccarolo, Paola
Giacobbe, Daniele Roberto
Baldi, Federico
Garbarino, Alberto
Cigolini, Benedetta
Cremonesi, Paolo
Bedognetti, Michele
Ballestrero, Alberto
Bassetti, Matteo
Hejblum, Boris P.
Augustine, Tracy
Van Panhuys, Nicholas
Thiebaut, Rodolphe
Branco, Ricardo
Chew, Tracey
Shojaei, Maryam
Short, Kirsty
Feng, Carl G.
Zughaier, Susu M.
De Maria, Andrea
Tang, Benjamin
Ait Hssain, Ali
Bedognetti, Davide
Grivel, Jean-Charles
Chaussabel, Damien
author_facet Rinchai, Darawan
Deola, Sara
Zoppoli, Gabriele
Kabeer, Basirudeen Syed Ahamed
Taleb, Sara
Pavlovski, Igor
Maacha, Selma
Gentilcore, Giusy
Toufiq, Mohammed
Mathew, Lisa
Liu, Li
Vempalli, Fazulur Rehaman
Mubarak, Ghada
Lorenz, Stephan
Sivieri, Irene
Cirmena, Gabriella
Dentone, Chiara
Cuccarolo, Paola
Giacobbe, Daniele Roberto
Baldi, Federico
Garbarino, Alberto
Cigolini, Benedetta
Cremonesi, Paolo
Bedognetti, Michele
Ballestrero, Alberto
Bassetti, Matteo
Hejblum, Boris P.
Augustine, Tracy
Van Panhuys, Nicholas
Thiebaut, Rodolphe
Branco, Ricardo
Chew, Tracey
Shojaei, Maryam
Short, Kirsty
Feng, Carl G.
Zughaier, Susu M.
De Maria, Andrea
Tang, Benjamin
Ait Hssain, Ali
Bedognetti, Davide
Grivel, Jean-Charles
Chaussabel, Damien
author_sort Rinchai, Darawan
collection PubMed
description Knowledge of the mechanisms underpinning the development of protective immunity conferred by mRNA vaccines is fragmentary. Here, we investigated responses to coronavirus disease 2019 (COVID-19) mRNA vaccination via high–temporal resolution blood transcriptome profiling. The first vaccine dose elicited modest interferon and adaptive immune responses, which peaked on days 2 and 5, respectively. The second vaccine dose, in contrast, elicited sharp day 1 interferon, inflammation, and erythroid cell responses, followed by a day 5 plasmablast response. Both post-first and post-second dose interferon signatures were associated with the subsequent development of antibody responses. Yet, we observed distinct interferon response patterns after each of the doses that may reflect quantitative or qualitative differences in interferon induction. Distinct interferon response phenotypes were also observed in patients with COVID-19 and were associated with severity and differences in duration of intensive care. Together, this study also highlights the benefits of adopting high-frequency sampling protocols in profiling vaccine-elicited immune responses.
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spelling pubmed-96518572022-11-23 High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines Rinchai, Darawan Deola, Sara Zoppoli, Gabriele Kabeer, Basirudeen Syed Ahamed Taleb, Sara Pavlovski, Igor Maacha, Selma Gentilcore, Giusy Toufiq, Mohammed Mathew, Lisa Liu, Li Vempalli, Fazulur Rehaman Mubarak, Ghada Lorenz, Stephan Sivieri, Irene Cirmena, Gabriella Dentone, Chiara Cuccarolo, Paola Giacobbe, Daniele Roberto Baldi, Federico Garbarino, Alberto Cigolini, Benedetta Cremonesi, Paolo Bedognetti, Michele Ballestrero, Alberto Bassetti, Matteo Hejblum, Boris P. Augustine, Tracy Van Panhuys, Nicholas Thiebaut, Rodolphe Branco, Ricardo Chew, Tracey Shojaei, Maryam Short, Kirsty Feng, Carl G. Zughaier, Susu M. De Maria, Andrea Tang, Benjamin Ait Hssain, Ali Bedognetti, Davide Grivel, Jean-Charles Chaussabel, Damien Sci Adv Biomedicine and Life Sciences Knowledge of the mechanisms underpinning the development of protective immunity conferred by mRNA vaccines is fragmentary. Here, we investigated responses to coronavirus disease 2019 (COVID-19) mRNA vaccination via high–temporal resolution blood transcriptome profiling. The first vaccine dose elicited modest interferon and adaptive immune responses, which peaked on days 2 and 5, respectively. The second vaccine dose, in contrast, elicited sharp day 1 interferon, inflammation, and erythroid cell responses, followed by a day 5 plasmablast response. Both post-first and post-second dose interferon signatures were associated with the subsequent development of antibody responses. Yet, we observed distinct interferon response patterns after each of the doses that may reflect quantitative or qualitative differences in interferon induction. Distinct interferon response phenotypes were also observed in patients with COVID-19 and were associated with severity and differences in duration of intensive care. Together, this study also highlights the benefits of adopting high-frequency sampling protocols in profiling vaccine-elicited immune responses. American Association for the Advancement of Science 2022-11-11 /pmc/articles/PMC9651857/ /pubmed/36367935 http://dx.doi.org/10.1126/sciadv.abp9961 Text en Copyright © 2022 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution License 4.0 (CC BY). https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution license (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 Biomedicine and Life Sciences
Rinchai, Darawan
Deola, Sara
Zoppoli, Gabriele
Kabeer, Basirudeen Syed Ahamed
Taleb, Sara
Pavlovski, Igor
Maacha, Selma
Gentilcore, Giusy
Toufiq, Mohammed
Mathew, Lisa
Liu, Li
Vempalli, Fazulur Rehaman
Mubarak, Ghada
Lorenz, Stephan
Sivieri, Irene
Cirmena, Gabriella
Dentone, Chiara
Cuccarolo, Paola
Giacobbe, Daniele Roberto
Baldi, Federico
Garbarino, Alberto
Cigolini, Benedetta
Cremonesi, Paolo
Bedognetti, Michele
Ballestrero, Alberto
Bassetti, Matteo
Hejblum, Boris P.
Augustine, Tracy
Van Panhuys, Nicholas
Thiebaut, Rodolphe
Branco, Ricardo
Chew, Tracey
Shojaei, Maryam
Short, Kirsty
Feng, Carl G.
Zughaier, Susu M.
De Maria, Andrea
Tang, Benjamin
Ait Hssain, Ali
Bedognetti, Davide
Grivel, Jean-Charles
Chaussabel, Damien
High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines
title High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines
title_full High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines
title_fullStr High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines
title_full_unstemmed High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines
title_short High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines
title_sort high–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of covid-19 mrna vaccines
topic Biomedicine and Life Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9651857/
https://www.ncbi.nlm.nih.gov/pubmed/36367935
http://dx.doi.org/10.1126/sciadv.abp9961
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