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A synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins

Antivenoms developed from the plasma of hyperimmunized animals are the only effective treatment available against snakebite envenomation but shortage of supply contributes to the high morbidity and mortality toll of this tropical disease. We describe a synthetic biology approach to affordable and co...

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Autores principales: Julve Parreño, Jose Manuel, Huet, Estefanía, Fernández‐del‐Carmen, Asun, Segura, Alvaro, Venturi, Micol, Gandía, Antoni, Pan, Wei‐song, Albaladejo, Irene, Forment, Javier, Pla, Davinia, Wigdorovitz, Andrés, Calvete, Juan J., Gutiérrez, Carlos, Gutiérrez, José María, Granell, Antonio, Orzáez, Diego
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5814581/
https://www.ncbi.nlm.nih.gov/pubmed/28850773
http://dx.doi.org/10.1111/pbi.12823
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author Julve Parreño, Jose Manuel
Huet, Estefanía
Fernández‐del‐Carmen, Asun
Segura, Alvaro
Venturi, Micol
Gandía, Antoni
Pan, Wei‐song
Albaladejo, Irene
Forment, Javier
Pla, Davinia
Wigdorovitz, Andrés
Calvete, Juan J.
Gutiérrez, Carlos
Gutiérrez, José María
Granell, Antonio
Orzáez, Diego
author_facet Julve Parreño, Jose Manuel
Huet, Estefanía
Fernández‐del‐Carmen, Asun
Segura, Alvaro
Venturi, Micol
Gandía, Antoni
Pan, Wei‐song
Albaladejo, Irene
Forment, Javier
Pla, Davinia
Wigdorovitz, Andrés
Calvete, Juan J.
Gutiérrez, Carlos
Gutiérrez, José María
Granell, Antonio
Orzáez, Diego
author_sort Julve Parreño, Jose Manuel
collection PubMed
description Antivenoms developed from the plasma of hyperimmunized animals are the only effective treatment available against snakebite envenomation but shortage of supply contributes to the high morbidity and mortality toll of this tropical disease. We describe a synthetic biology approach to affordable and cost‐effective antivenom production based on plant‐made recombinant polyclonal antibodies (termed pluribodies). The strategy takes advantage of virus superinfection exclusion to induce the formation of somatic expression mosaics in agroinfiltrated plants, which enables the expression of complex antibody repertoires in a highly reproducible manner. Pluribodies developed using toxin‐binding genetic information captured from peripheral blood lymphocytes of hyperimmunized camels recapitulated the overall binding activity of the immune response. Furthermore, an improved plant‐made antivenom (plantivenom) was formulated using an in vitro selected pluribody against Bothrops asper snake venom toxins and has been shown to neutralize a wide range of toxin activities and provide protection against lethal venom doses in mice.
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spelling pubmed-58145812018-02-21 A synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins Julve Parreño, Jose Manuel Huet, Estefanía Fernández‐del‐Carmen, Asun Segura, Alvaro Venturi, Micol Gandía, Antoni Pan, Wei‐song Albaladejo, Irene Forment, Javier Pla, Davinia Wigdorovitz, Andrés Calvete, Juan J. Gutiérrez, Carlos Gutiérrez, José María Granell, Antonio Orzáez, Diego Plant Biotechnol J Research Articles Antivenoms developed from the plasma of hyperimmunized animals are the only effective treatment available against snakebite envenomation but shortage of supply contributes to the high morbidity and mortality toll of this tropical disease. We describe a synthetic biology approach to affordable and cost‐effective antivenom production based on plant‐made recombinant polyclonal antibodies (termed pluribodies). The strategy takes advantage of virus superinfection exclusion to induce the formation of somatic expression mosaics in agroinfiltrated plants, which enables the expression of complex antibody repertoires in a highly reproducible manner. Pluribodies developed using toxin‐binding genetic information captured from peripheral blood lymphocytes of hyperimmunized camels recapitulated the overall binding activity of the immune response. Furthermore, an improved plant‐made antivenom (plantivenom) was formulated using an in vitro selected pluribody against Bothrops asper snake venom toxins and has been shown to neutralize a wide range of toxin activities and provide protection against lethal venom doses in mice. John Wiley and Sons Inc. 2017-09-22 2018-03 /pmc/articles/PMC5814581/ /pubmed/28850773 http://dx.doi.org/10.1111/pbi.12823 Text en © 2017 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Julve Parreño, Jose Manuel
Huet, Estefanía
Fernández‐del‐Carmen, Asun
Segura, Alvaro
Venturi, Micol
Gandía, Antoni
Pan, Wei‐song
Albaladejo, Irene
Forment, Javier
Pla, Davinia
Wigdorovitz, Andrés
Calvete, Juan J.
Gutiérrez, Carlos
Gutiérrez, José María
Granell, Antonio
Orzáez, Diego
A synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins
title A synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins
title_full A synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins
title_fullStr A synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins
title_full_unstemmed A synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins
title_short A synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins
title_sort synthetic biology approach for consistent production of plant‐made recombinant polyclonal antibodies against snake venom toxins
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5814581/
https://www.ncbi.nlm.nih.gov/pubmed/28850773
http://dx.doi.org/10.1111/pbi.12823
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