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Título

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

AutorJulve, José Manuel CSIC; Huet, E.; Fernández-del-Carmen, E.; Segura, A.; Venturi, M.; Gandía, Antoni; Pan, W.; Albaladejo, I.; Forment, Javier CSIC ORCID; Pla, D.; Wigdorovitz, A.; Calvete, Juan J. CSIC ORCID; Gutiérrez, C.; Gutiérrez, José M. CSIC ORCID ; Granell, Antonio CSIC ORCID; Orzáez, D.
Palabras claveRecombinant polyclonal antibodies
Molecular pharming
Snake antivenoms
Fecha de publicaciónmar-2018
EditorJohn Wiley & Sons
CitaciónPlant Biotechnology Journal 16(3): 727-736 (2018)
ResumenAntivenoms 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.
Versión del editorhttps://doi.org/10.1111/pbi.12823
URIhttp://hdl.handle.net/10261/173885
DOI10.1111/pbi.12823
ISSN1467-7644
E-ISSN1467-7652
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