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Integrated pipeline for the accelerated discovery of antiviral antibody therapeutics

The emergence and re-emergence of highly virulent viral pathogens with pandemic potential creates an urgent need for the accelerated discovery of antiviral therapeutics. Antiviral human monoclonal antibodies (mAbs) are promising candidates to prevent or treat severe viral diseases, but their long de...

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Autores principales: Gilchuk, Pavlo, Bombardi, Robin G., Erasmus, Jesse H., Tan, Qing, Nargi, Rachel, Soto, Cinque, Abbink, Peter, Suscovich, Todd J, Durnell, Lorellin A., Khandhar, Amit, Archer, Jacob, Liang, Jenny, Fouch, Mallorie E., Davidson, Edgar, Doranz, Benjamin J., Jones, Taylor, Larson, Elise, Ertel, Stacey, Granger, Brian, Fuerte-Stone, Jasmine, Roy, Vicky, Broge, Thomas, Linnekin, Thomas C., Linde, Caitlyn H., Gorman, Matthew J., Nkolola, Joseph, Alter, Galit, Reed, Steven G., Barouch, Dan H., Diamond, Michael S., Crowe, James E., Van Hoeven, Neal, Thackray, Larissa, Carnahan, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7655621/
https://www.ncbi.nlm.nih.gov/pubmed/32747832
http://dx.doi.org/10.1038/s41551-020-0594-x
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author Gilchuk, Pavlo
Bombardi, Robin G.
Erasmus, Jesse H.
Tan, Qing
Nargi, Rachel
Soto, Cinque
Abbink, Peter
Suscovich, Todd J
Durnell, Lorellin A.
Khandhar, Amit
Archer, Jacob
Liang, Jenny
Fouch, Mallorie E.
Davidson, Edgar
Doranz, Benjamin J.
Jones, Taylor
Larson, Elise
Ertel, Stacey
Granger, Brian
Fuerte-Stone, Jasmine
Roy, Vicky
Broge, Thomas
Linnekin, Thomas C.
Linde, Caitlyn H.
Gorman, Matthew J.
Nkolola, Joseph
Alter, Galit
Reed, Steven G.
Barouch, Dan H.
Diamond, Michael S.
Crowe, James E.
Van Hoeven, Neal
Thackray, Larissa
Carnahan, Robert
author_facet Gilchuk, Pavlo
Bombardi, Robin G.
Erasmus, Jesse H.
Tan, Qing
Nargi, Rachel
Soto, Cinque
Abbink, Peter
Suscovich, Todd J
Durnell, Lorellin A.
Khandhar, Amit
Archer, Jacob
Liang, Jenny
Fouch, Mallorie E.
Davidson, Edgar
Doranz, Benjamin J.
Jones, Taylor
Larson, Elise
Ertel, Stacey
Granger, Brian
Fuerte-Stone, Jasmine
Roy, Vicky
Broge, Thomas
Linnekin, Thomas C.
Linde, Caitlyn H.
Gorman, Matthew J.
Nkolola, Joseph
Alter, Galit
Reed, Steven G.
Barouch, Dan H.
Diamond, Michael S.
Crowe, James E.
Van Hoeven, Neal
Thackray, Larissa
Carnahan, Robert
author_sort Gilchuk, Pavlo
collection PubMed
description The emergence and re-emergence of highly virulent viral pathogens with pandemic potential creates an urgent need for the accelerated discovery of antiviral therapeutics. Antiviral human monoclonal antibodies (mAbs) are promising candidates to prevent or treat severe viral diseases, but their long development timeframes limit their rapid deployment and use. Here, we report the development of an integrated sequence of technologies, including single-cell mRNA sequence analysis, bioinformatics, synthetic biology and high-throughput functional analysis, that enabled the rapid discovery of highly potent antiviral human mAbs, whose activity we validated in vivo. In a 78-day study modelling the deployment of a rapid response to an outbreak, we isolated more than 100 human mAbs specific for the Zika virus, assessed their function, identified 29 of those as having broadly neutralizing activity, and verified the therapeutic potency of the lead candidates in mice and non-human primate models of infection via the delivery of an antibody-encoding mRNA formulation and of the respective IgG antibody. The pipeline provides a roadmap for rapid antibody-discovery programs against viral pathogens of global concern.
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spelling pubmed-76556212021-02-03 Integrated pipeline for the accelerated discovery of antiviral antibody therapeutics Gilchuk, Pavlo Bombardi, Robin G. Erasmus, Jesse H. Tan, Qing Nargi, Rachel Soto, Cinque Abbink, Peter Suscovich, Todd J Durnell, Lorellin A. Khandhar, Amit Archer, Jacob Liang, Jenny Fouch, Mallorie E. Davidson, Edgar Doranz, Benjamin J. Jones, Taylor Larson, Elise Ertel, Stacey Granger, Brian Fuerte-Stone, Jasmine Roy, Vicky Broge, Thomas Linnekin, Thomas C. Linde, Caitlyn H. Gorman, Matthew J. Nkolola, Joseph Alter, Galit Reed, Steven G. Barouch, Dan H. Diamond, Michael S. Crowe, James E. Van Hoeven, Neal Thackray, Larissa Carnahan, Robert Nat Biomed Eng Article The emergence and re-emergence of highly virulent viral pathogens with pandemic potential creates an urgent need for the accelerated discovery of antiviral therapeutics. Antiviral human monoclonal antibodies (mAbs) are promising candidates to prevent or treat severe viral diseases, but their long development timeframes limit their rapid deployment and use. Here, we report the development of an integrated sequence of technologies, including single-cell mRNA sequence analysis, bioinformatics, synthetic biology and high-throughput functional analysis, that enabled the rapid discovery of highly potent antiviral human mAbs, whose activity we validated in vivo. In a 78-day study modelling the deployment of a rapid response to an outbreak, we isolated more than 100 human mAbs specific for the Zika virus, assessed their function, identified 29 of those as having broadly neutralizing activity, and verified the therapeutic potency of the lead candidates in mice and non-human primate models of infection via the delivery of an antibody-encoding mRNA formulation and of the respective IgG antibody. The pipeline provides a roadmap for rapid antibody-discovery programs against viral pathogens of global concern. 2020-08-03 2020-11 /pmc/articles/PMC7655621/ /pubmed/32747832 http://dx.doi.org/10.1038/s41551-020-0594-x Text en Users may view, print, copy, and download 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
Gilchuk, Pavlo
Bombardi, Robin G.
Erasmus, Jesse H.
Tan, Qing
Nargi, Rachel
Soto, Cinque
Abbink, Peter
Suscovich, Todd J
Durnell, Lorellin A.
Khandhar, Amit
Archer, Jacob
Liang, Jenny
Fouch, Mallorie E.
Davidson, Edgar
Doranz, Benjamin J.
Jones, Taylor
Larson, Elise
Ertel, Stacey
Granger, Brian
Fuerte-Stone, Jasmine
Roy, Vicky
Broge, Thomas
Linnekin, Thomas C.
Linde, Caitlyn H.
Gorman, Matthew J.
Nkolola, Joseph
Alter, Galit
Reed, Steven G.
Barouch, Dan H.
Diamond, Michael S.
Crowe, James E.
Van Hoeven, Neal
Thackray, Larissa
Carnahan, Robert
Integrated pipeline for the accelerated discovery of antiviral antibody therapeutics
title Integrated pipeline for the accelerated discovery of antiviral antibody therapeutics
title_full Integrated pipeline for the accelerated discovery of antiviral antibody therapeutics
title_fullStr Integrated pipeline for the accelerated discovery of antiviral antibody therapeutics
title_full_unstemmed Integrated pipeline for the accelerated discovery of antiviral antibody therapeutics
title_short Integrated pipeline for the accelerated discovery of antiviral antibody therapeutics
title_sort integrated pipeline for the accelerated discovery of antiviral antibody therapeutics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7655621/
https://www.ncbi.nlm.nih.gov/pubmed/32747832
http://dx.doi.org/10.1038/s41551-020-0594-x
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