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Immunogenicity and reactogenicity of heterologous immunization against SARS CoV-2 using Sputnik V, ChAdOx1-S, BBIBP-CorV, Ad5-nCoV, and mRNA-1273
Heterologous vaccination against coronavirus disease 2019 (COVID-19) provides a rational strategy to rapidly increase vaccination coverage in many regions of the world. Although data regarding messenger RNA (mRNA) and ChAdOx1 vaccine combinations are available, there is limited information about the...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9346506/ https://www.ncbi.nlm.nih.gov/pubmed/35926505 http://dx.doi.org/10.1016/j.xcrm.2022.100706 |
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author | Pascuale, Carla A. Varese, Augusto Ojeda, Diego S. Pasinovich, Marina E. Lopez, Laura Rossi, Andres H. Rodriguez, Pamela E. Miglietta, Esteban A. Mazzitelli, Ignacio Di Diego Garcia, Facundo Sanchez, Lautaro Rouco, Santiago Oviedo Gonzalez Lopez Ledesma, María Mora Zurano, Juan Pablo Mazzitelli, Bianca Scruzzi, Graciela Barbero, Paula Cardozo, Diego Gallego, Sandra Borda, Mariel Diaz, Miguel Ridao, Francisco Rosales, Angela Brigido Bhon, Jorge Talia, Juan M. Diangelo, María E. Lacaze, María A. Aime, Balanzino Gutierrez, Sebastian Isaac Ercole, Regina Toro, Rosana Tau, Lorena Delaplace, Laura Compagnucci, Malena Ferreyra Sartori, Celeste Desimone, Isabel Echegoyen, Cecilia Velazquez, Pilar Testa, Clarisa Hozbor, Daniela Docena, Guillermo Laino, Carlos H. Kreplak, Nicolas Pifano, Marina Barbas, Gabriela Rearte, Analía Vizzotti, Carla Castelli, Juan M. Geffner, Jorge Gamarnik, Andrea V. |
author_facet | Pascuale, Carla A. Varese, Augusto Ojeda, Diego S. Pasinovich, Marina E. Lopez, Laura Rossi, Andres H. Rodriguez, Pamela E. Miglietta, Esteban A. Mazzitelli, Ignacio Di Diego Garcia, Facundo Sanchez, Lautaro Rouco, Santiago Oviedo Gonzalez Lopez Ledesma, María Mora Zurano, Juan Pablo Mazzitelli, Bianca Scruzzi, Graciela Barbero, Paula Cardozo, Diego Gallego, Sandra Borda, Mariel Diaz, Miguel Ridao, Francisco Rosales, Angela Brigido Bhon, Jorge Talia, Juan M. Diangelo, María E. Lacaze, María A. Aime, Balanzino Gutierrez, Sebastian Isaac Ercole, Regina Toro, Rosana Tau, Lorena Delaplace, Laura Compagnucci, Malena Ferreyra Sartori, Celeste Desimone, Isabel Echegoyen, Cecilia Velazquez, Pilar Testa, Clarisa Hozbor, Daniela Docena, Guillermo Laino, Carlos H. Kreplak, Nicolas Pifano, Marina Barbas, Gabriela Rearte, Analía Vizzotti, Carla Castelli, Juan M. Geffner, Jorge Gamarnik, Andrea V. |
author_sort | Pascuale, Carla A. |
collection | PubMed |
description | Heterologous vaccination against coronavirus disease 2019 (COVID-19) provides a rational strategy to rapidly increase vaccination coverage in many regions of the world. Although data regarding messenger RNA (mRNA) and ChAdOx1 vaccine combinations are available, there is limited information about the combination of these platforms with other vaccines widely used in developing countries, such as BBIBP-CorV and Sputnik V. Here, we assess the immunogenicity and reactogenicity of 15 vaccine combinations in 1,314 participants. We evaluate immunoglobulin G (IgG) anti-spike response and virus neutralizing titers and observe that a number of heterologous vaccine combinations are equivalent or superior to homologous schemes. For all cohorts in this study, the highest antibody response is induced by mRNA-1273 as the second dose. No serious adverse events are detected in any of the schedules analyzed. Our observations provide rational support for the use of different vaccine combinations to achieve wide vaccine coverage in the shortest possible time. |
format | Online Article Text |
id | pubmed-9346506 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-93465062022-08-03 Immunogenicity and reactogenicity of heterologous immunization against SARS CoV-2 using Sputnik V, ChAdOx1-S, BBIBP-CorV, Ad5-nCoV, and mRNA-1273 Pascuale, Carla A. Varese, Augusto Ojeda, Diego S. Pasinovich, Marina E. Lopez, Laura Rossi, Andres H. Rodriguez, Pamela E. Miglietta, Esteban A. Mazzitelli, Ignacio Di Diego Garcia, Facundo Sanchez, Lautaro Rouco, Santiago Oviedo Gonzalez Lopez Ledesma, María Mora Zurano, Juan Pablo Mazzitelli, Bianca Scruzzi, Graciela Barbero, Paula Cardozo, Diego Gallego, Sandra Borda, Mariel Diaz, Miguel Ridao, Francisco Rosales, Angela Brigido Bhon, Jorge Talia, Juan M. Diangelo, María E. Lacaze, María A. Aime, Balanzino Gutierrez, Sebastian Isaac Ercole, Regina Toro, Rosana Tau, Lorena Delaplace, Laura Compagnucci, Malena Ferreyra Sartori, Celeste Desimone, Isabel Echegoyen, Cecilia Velazquez, Pilar Testa, Clarisa Hozbor, Daniela Docena, Guillermo Laino, Carlos H. Kreplak, Nicolas Pifano, Marina Barbas, Gabriela Rearte, Analía Vizzotti, Carla Castelli, Juan M. Geffner, Jorge Gamarnik, Andrea V. Cell Rep Med Article Heterologous vaccination against coronavirus disease 2019 (COVID-19) provides a rational strategy to rapidly increase vaccination coverage in many regions of the world. Although data regarding messenger RNA (mRNA) and ChAdOx1 vaccine combinations are available, there is limited information about the combination of these platforms with other vaccines widely used in developing countries, such as BBIBP-CorV and Sputnik V. Here, we assess the immunogenicity and reactogenicity of 15 vaccine combinations in 1,314 participants. We evaluate immunoglobulin G (IgG) anti-spike response and virus neutralizing titers and observe that a number of heterologous vaccine combinations are equivalent or superior to homologous schemes. For all cohorts in this study, the highest antibody response is induced by mRNA-1273 as the second dose. No serious adverse events are detected in any of the schedules analyzed. Our observations provide rational support for the use of different vaccine combinations to achieve wide vaccine coverage in the shortest possible time. Elsevier 2022-08-03 /pmc/articles/PMC9346506/ /pubmed/35926505 http://dx.doi.org/10.1016/j.xcrm.2022.100706 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Article Pascuale, Carla A. Varese, Augusto Ojeda, Diego S. Pasinovich, Marina E. Lopez, Laura Rossi, Andres H. Rodriguez, Pamela E. Miglietta, Esteban A. Mazzitelli, Ignacio Di Diego Garcia, Facundo Sanchez, Lautaro Rouco, Santiago Oviedo Gonzalez Lopez Ledesma, María Mora Zurano, Juan Pablo Mazzitelli, Bianca Scruzzi, Graciela Barbero, Paula Cardozo, Diego Gallego, Sandra Borda, Mariel Diaz, Miguel Ridao, Francisco Rosales, Angela Brigido Bhon, Jorge Talia, Juan M. Diangelo, María E. Lacaze, María A. Aime, Balanzino Gutierrez, Sebastian Isaac Ercole, Regina Toro, Rosana Tau, Lorena Delaplace, Laura Compagnucci, Malena Ferreyra Sartori, Celeste Desimone, Isabel Echegoyen, Cecilia Velazquez, Pilar Testa, Clarisa Hozbor, Daniela Docena, Guillermo Laino, Carlos H. Kreplak, Nicolas Pifano, Marina Barbas, Gabriela Rearte, Analía Vizzotti, Carla Castelli, Juan M. Geffner, Jorge Gamarnik, Andrea V. Immunogenicity and reactogenicity of heterologous immunization against SARS CoV-2 using Sputnik V, ChAdOx1-S, BBIBP-CorV, Ad5-nCoV, and mRNA-1273 |
title | Immunogenicity and reactogenicity of heterologous immunization against SARS CoV-2 using Sputnik V, ChAdOx1-S, BBIBP-CorV, Ad5-nCoV, and mRNA-1273 |
title_full | Immunogenicity and reactogenicity of heterologous immunization against SARS CoV-2 using Sputnik V, ChAdOx1-S, BBIBP-CorV, Ad5-nCoV, and mRNA-1273 |
title_fullStr | Immunogenicity and reactogenicity of heterologous immunization against SARS CoV-2 using Sputnik V, ChAdOx1-S, BBIBP-CorV, Ad5-nCoV, and mRNA-1273 |
title_full_unstemmed | Immunogenicity and reactogenicity of heterologous immunization against SARS CoV-2 using Sputnik V, ChAdOx1-S, BBIBP-CorV, Ad5-nCoV, and mRNA-1273 |
title_short | Immunogenicity and reactogenicity of heterologous immunization against SARS CoV-2 using Sputnik V, ChAdOx1-S, BBIBP-CorV, Ad5-nCoV, and mRNA-1273 |
title_sort | immunogenicity and reactogenicity of heterologous immunization against sars cov-2 using sputnik v, chadox1-s, bbibp-corv, ad5-ncov, and mrna-1273 |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9346506/ https://www.ncbi.nlm.nih.gov/pubmed/35926505 http://dx.doi.org/10.1016/j.xcrm.2022.100706 |
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