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DNA-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against SARS-CoV-2

Monoclonal antibody therapy has played an important role against SARS-CoV-2. Strategies to deliver functional, antibody-based therapeutics with improved in vivo durability are needed to supplement current efforts and reach underserved populations. Here, we compare recombinant mAbs COV2-2196 and COV2...

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Autores principales: Parzych, Elizabeth M., Du, Jianqiu, Ali, Ali R., Schultheis, Katherine, Frase, Drew, Smith, Trevor R. F., Cui, Jiayan, Chokkalingam, Neethu, Tursi, Nicholas J., Andrade, Viviane M., Warner, Bryce M., Gary, Ebony N., Li, Yue, Choi, Jihae, Eisenhauer, Jillian, Maricic, Igor, Kulkarni, Abhijeet, Chu, Jacqueline D., Villafana, Gabrielle, Rosenthal, Kim, Ren, Kuishu, Francica, Joseph R., Wootton, Sarah K., Tebas, Pablo, Kobasa, Darwyn, Broderick, Kate E., Boyer, Jean D., Esser, Mark T., Pallesen, Jesper, Kulp, Dan W., Patel, Ami, Weiner, David B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9537531/
https://www.ncbi.nlm.nih.gov/pubmed/36202799
http://dx.doi.org/10.1038/s41467-022-33309-6
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author Parzych, Elizabeth M.
Du, Jianqiu
Ali, Ali R.
Schultheis, Katherine
Frase, Drew
Smith, Trevor R. F.
Cui, Jiayan
Chokkalingam, Neethu
Tursi, Nicholas J.
Andrade, Viviane M.
Warner, Bryce M.
Gary, Ebony N.
Li, Yue
Choi, Jihae
Eisenhauer, Jillian
Maricic, Igor
Kulkarni, Abhijeet
Chu, Jacqueline D.
Villafana, Gabrielle
Rosenthal, Kim
Ren, Kuishu
Francica, Joseph R.
Wootton, Sarah K.
Tebas, Pablo
Kobasa, Darwyn
Broderick, Kate E.
Boyer, Jean D.
Esser, Mark T.
Pallesen, Jesper
Kulp, Dan W.
Patel, Ami
Weiner, David B.
author_facet Parzych, Elizabeth M.
Du, Jianqiu
Ali, Ali R.
Schultheis, Katherine
Frase, Drew
Smith, Trevor R. F.
Cui, Jiayan
Chokkalingam, Neethu
Tursi, Nicholas J.
Andrade, Viviane M.
Warner, Bryce M.
Gary, Ebony N.
Li, Yue
Choi, Jihae
Eisenhauer, Jillian
Maricic, Igor
Kulkarni, Abhijeet
Chu, Jacqueline D.
Villafana, Gabrielle
Rosenthal, Kim
Ren, Kuishu
Francica, Joseph R.
Wootton, Sarah K.
Tebas, Pablo
Kobasa, Darwyn
Broderick, Kate E.
Boyer, Jean D.
Esser, Mark T.
Pallesen, Jesper
Kulp, Dan W.
Patel, Ami
Weiner, David B.
author_sort Parzych, Elizabeth M.
collection PubMed
description Monoclonal antibody therapy has played an important role against SARS-CoV-2. Strategies to deliver functional, antibody-based therapeutics with improved in vivo durability are needed to supplement current efforts and reach underserved populations. Here, we compare recombinant mAbs COV2-2196 and COV2-2130, which compromise clinical cocktail Tixagevimab/Cilgavimab, with optimized nucleic acid-launched forms. Functional profiling of in vivo-expressed, DNA-encoded monoclonal antibodies (DMAbs) demonstrated similar specificity, broad antiviral potency and equivalent protective efficacy in multiple animal challenge models of SARS-CoV-2 prophylaxis compared to protein delivery. In PK studies, DNA-delivery drove significant serum antibody titers that were better maintained compared to protein administration. Furthermore, cryo-EM studies performed on serum-derived DMAbs provide the first high-resolution visualization of in vivo-launched antibodies, revealing new interactions that may promote cooperative binding to trimeric antigen and broad activity against VoC including Omicron lineages. These data support the further study of DMAb technology in the development and delivery of valuable biologics.
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spelling pubmed-95375312022-10-08 DNA-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against SARS-CoV-2 Parzych, Elizabeth M. Du, Jianqiu Ali, Ali R. Schultheis, Katherine Frase, Drew Smith, Trevor R. F. Cui, Jiayan Chokkalingam, Neethu Tursi, Nicholas J. Andrade, Viviane M. Warner, Bryce M. Gary, Ebony N. Li, Yue Choi, Jihae Eisenhauer, Jillian Maricic, Igor Kulkarni, Abhijeet Chu, Jacqueline D. Villafana, Gabrielle Rosenthal, Kim Ren, Kuishu Francica, Joseph R. Wootton, Sarah K. Tebas, Pablo Kobasa, Darwyn Broderick, Kate E. Boyer, Jean D. Esser, Mark T. Pallesen, Jesper Kulp, Dan W. Patel, Ami Weiner, David B. Nat Commun Article Monoclonal antibody therapy has played an important role against SARS-CoV-2. Strategies to deliver functional, antibody-based therapeutics with improved in vivo durability are needed to supplement current efforts and reach underserved populations. Here, we compare recombinant mAbs COV2-2196 and COV2-2130, which compromise clinical cocktail Tixagevimab/Cilgavimab, with optimized nucleic acid-launched forms. Functional profiling of in vivo-expressed, DNA-encoded monoclonal antibodies (DMAbs) demonstrated similar specificity, broad antiviral potency and equivalent protective efficacy in multiple animal challenge models of SARS-CoV-2 prophylaxis compared to protein delivery. In PK studies, DNA-delivery drove significant serum antibody titers that were better maintained compared to protein administration. Furthermore, cryo-EM studies performed on serum-derived DMAbs provide the first high-resolution visualization of in vivo-launched antibodies, revealing new interactions that may promote cooperative binding to trimeric antigen and broad activity against VoC including Omicron lineages. These data support the further study of DMAb technology in the development and delivery of valuable biologics. Nature Publishing Group UK 2022-10-06 /pmc/articles/PMC9537531/ /pubmed/36202799 http://dx.doi.org/10.1038/s41467-022-33309-6 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Parzych, Elizabeth M.
Du, Jianqiu
Ali, Ali R.
Schultheis, Katherine
Frase, Drew
Smith, Trevor R. F.
Cui, Jiayan
Chokkalingam, Neethu
Tursi, Nicholas J.
Andrade, Viviane M.
Warner, Bryce M.
Gary, Ebony N.
Li, Yue
Choi, Jihae
Eisenhauer, Jillian
Maricic, Igor
Kulkarni, Abhijeet
Chu, Jacqueline D.
Villafana, Gabrielle
Rosenthal, Kim
Ren, Kuishu
Francica, Joseph R.
Wootton, Sarah K.
Tebas, Pablo
Kobasa, Darwyn
Broderick, Kate E.
Boyer, Jean D.
Esser, Mark T.
Pallesen, Jesper
Kulp, Dan W.
Patel, Ami
Weiner, David B.
DNA-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against SARS-CoV-2
title DNA-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against SARS-CoV-2
title_full DNA-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against SARS-CoV-2
title_fullStr DNA-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against SARS-CoV-2
title_full_unstemmed DNA-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against SARS-CoV-2
title_short DNA-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against SARS-CoV-2
title_sort dna-delivered antibody cocktail exhibits improved pharmacokinetics and confers prophylactic protection against sars-cov-2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9537531/
https://www.ncbi.nlm.nih.gov/pubmed/36202799
http://dx.doi.org/10.1038/s41467-022-33309-6
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