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Isolation of Anti-Ricin Protective Antibodies Exhibiting High Affinity from Immunized Non-Human Primates

Ricin, derived from the castor bean plant Ricinus communis, is one of the most potent and lethal toxins known, against which there is no available antidote. To date, the use of neutralizing antibodies is the most promising post-exposure treatment for ricin intoxication. The aim of this study was to...

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Autores principales: Noy-Porat, Tal, Rosenfeld, Ronit, Ariel, Naomi, Epstein, Eyal, Alcalay, Ron, Zvi, Anat, Kronman, Chanoch, Ordentlich, Arie, Mazor, Ohad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4810209/
https://www.ncbi.nlm.nih.gov/pubmed/26950154
http://dx.doi.org/10.3390/toxins8030064
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author Noy-Porat, Tal
Rosenfeld, Ronit
Ariel, Naomi
Epstein, Eyal
Alcalay, Ron
Zvi, Anat
Kronman, Chanoch
Ordentlich, Arie
Mazor, Ohad
author_facet Noy-Porat, Tal
Rosenfeld, Ronit
Ariel, Naomi
Epstein, Eyal
Alcalay, Ron
Zvi, Anat
Kronman, Chanoch
Ordentlich, Arie
Mazor, Ohad
author_sort Noy-Porat, Tal
collection PubMed
description Ricin, derived from the castor bean plant Ricinus communis, is one of the most potent and lethal toxins known, against which there is no available antidote. To date, the use of neutralizing antibodies is the most promising post-exposure treatment for ricin intoxication. The aim of this study was to isolate high affinity anti-ricin antibodies that possess potent toxin-neutralization capabilities. Two non-human primates were immunized with either a ricin-holotoxin- or subunit-based vaccine, to ensure the elicitation of diverse high affinity antibodies. By using a comprehensive set of primers, immune scFv phage-displayed libraries were constructed and panned. A panel of 10 antibodies (five directed against the A subunit of ricin and five against the B subunit) was isolated and reformatted into a full-length chimeric IgG. All of these antibodies were found to neutralize ricin in vitro, and several conferred full protection to ricin-intoxicated mice when given six hours after exposure. Six antibodies were found to possess exceptionally high affinity toward the toxin, with K(D) values below pM (k(off) < 1 × 10(−7) s(−1)) that were well correlated with their ability to neutralize ricin. These antibodies, alone or in combination, could be used for the development of a highly-effective therapeutic preparation for post-exposure treatment of ricin intoxication.
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spelling pubmed-48102092016-04-04 Isolation of Anti-Ricin Protective Antibodies Exhibiting High Affinity from Immunized Non-Human Primates Noy-Porat, Tal Rosenfeld, Ronit Ariel, Naomi Epstein, Eyal Alcalay, Ron Zvi, Anat Kronman, Chanoch Ordentlich, Arie Mazor, Ohad Toxins (Basel) Article Ricin, derived from the castor bean plant Ricinus communis, is one of the most potent and lethal toxins known, against which there is no available antidote. To date, the use of neutralizing antibodies is the most promising post-exposure treatment for ricin intoxication. The aim of this study was to isolate high affinity anti-ricin antibodies that possess potent toxin-neutralization capabilities. Two non-human primates were immunized with either a ricin-holotoxin- or subunit-based vaccine, to ensure the elicitation of diverse high affinity antibodies. By using a comprehensive set of primers, immune scFv phage-displayed libraries were constructed and panned. A panel of 10 antibodies (five directed against the A subunit of ricin and five against the B subunit) was isolated and reformatted into a full-length chimeric IgG. All of these antibodies were found to neutralize ricin in vitro, and several conferred full protection to ricin-intoxicated mice when given six hours after exposure. Six antibodies were found to possess exceptionally high affinity toward the toxin, with K(D) values below pM (k(off) < 1 × 10(−7) s(−1)) that were well correlated with their ability to neutralize ricin. These antibodies, alone or in combination, could be used for the development of a highly-effective therapeutic preparation for post-exposure treatment of ricin intoxication. MDPI 2016-03-03 /pmc/articles/PMC4810209/ /pubmed/26950154 http://dx.doi.org/10.3390/toxins8030064 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Noy-Porat, Tal
Rosenfeld, Ronit
Ariel, Naomi
Epstein, Eyal
Alcalay, Ron
Zvi, Anat
Kronman, Chanoch
Ordentlich, Arie
Mazor, Ohad
Isolation of Anti-Ricin Protective Antibodies Exhibiting High Affinity from Immunized Non-Human Primates
title Isolation of Anti-Ricin Protective Antibodies Exhibiting High Affinity from Immunized Non-Human Primates
title_full Isolation of Anti-Ricin Protective Antibodies Exhibiting High Affinity from Immunized Non-Human Primates
title_fullStr Isolation of Anti-Ricin Protective Antibodies Exhibiting High Affinity from Immunized Non-Human Primates
title_full_unstemmed Isolation of Anti-Ricin Protective Antibodies Exhibiting High Affinity from Immunized Non-Human Primates
title_short Isolation of Anti-Ricin Protective Antibodies Exhibiting High Affinity from Immunized Non-Human Primates
title_sort isolation of anti-ricin protective antibodies exhibiting high affinity from immunized non-human primates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4810209/
https://www.ncbi.nlm.nih.gov/pubmed/26950154
http://dx.doi.org/10.3390/toxins8030064
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