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Título : Corrigendum to: “venomics of the poorly studied hognosed pitvipers porthidium arcosae and porthidium volcanicum”
Autor: Ruiz Campos, Marco
Sanz, Libia
Bonilla Murillo, Fabián
Mahmood M., Sasa
Lomonte Vigliotti, Bruno
Zaruma Torres, Fausto Leonardo
Teran Zavala, Maria Del carmen
Fernandez Ulate, Julian
Calvete Chornet, Juan José
Caldeira, Cleópatra Alves da Silva
Da Silva, Saulo Luis
Correspondencia: Calvete Chornet, Juan José, jcalvete@ibv.csic.es
Palabras clave : Antivenomics
Genus porthidium
Latin American antivenoms
Porthidium arcosae
Porthidium volcanicum
Snake venomics
Área de conocimiento FRASCATI amplio: 1. Ciencias Naturales y Exactas
Área de conocimiento FRASCATI detallado: 1.6.4 Bioquímica y Biología Molecular
Área de conocimiento FRASCATI específico: 1.6 Ciencias Biológicas
Área de conocimiento UNESCO amplio: 09 - Salud y Bienestar
ÁArea de conocimiento UNESCO detallado: 0914 - Tecnologías de Diagnóstico y Tratamiento Médico
Área de conocimiento UNESCO específico: 091 - Salud
Fecha de publicación : 2019
Volumen: Volumen 250
Fuente: Journal of Proteomics
metadata.dc.identifier.doi: 10.1016/j.jprot.2021.104391
Tipo: ARTÍCULO
Abstract: 
We report the first proteomics analyses of the venoms of two poorly studied snakes, the Manabi hognosed pitviper Porthidium arcosae endemic to the western coastal province of Manabí (Ecuador), and the Costa Rican hognosed pitviper P. volcanicum with distribution restricted to South Pacific Costa Rica and western Panamá. These venom proteomes share a conserved compositional pattern reported in four other congeneric species within the clade of South American Porthidium species, P. nasutum, P. lansbergii, P. ophryomegas, and P. porrasi. The paraspecific immunorecognition profile of antivenoms produced in Costa Rica (ICP polyvalent), Perú (Instituto Nacional de Salud) and Brazil (soro antibotrópico pentavalente, SAB, from Instituto Butantan) against the venom of P. arcosae was investigated through a third-generation antivenomics approach. The maximal venom-binding capacities of the investigated antivenoms were 97.1 mg, 21.8 mg, and 25.7 mg of P. arcosae venom proteins per gram of SAB, ICP, and INS-PERU antibody molecules, respectively, which translate into 28.4 mg, 13.1 mg, and 15.2 mg of total venom proteins bound per vial of SAB, ICP, and INS-PERU AV. The antivenomics results suggest that 21.8%, 7.8% and 6.1% of the SAB, ICP, and INS-PERU antibody molecules recognized P. arcosae venom toxins. The SAB antivenom neutralized P. arcosae venom's lethality in mice with an ED50 of 31.3 mgV/g SAB AV. This preclinical neutralization paraspecificity points to Brazilian SAB as a promising candidate for the treatment of envenomings by Ecuadorian P. arcosae. BIOLOGICAL SIGNIFICANCE: Assessing the preclinical efficacy profile of antivenoms against homologous and heterologous medically relevant snake venoms represents an important goal towards defining the biogeographic range of their clinical utility. This is particularly relevant in regions, such as Mesoamerica, where a small number of pharmaceutical companies produce antivenoms against the venoms of a small number of species of maximum medical relevance among the local rich herpetofauna, leaving a wide range of snakes of secondary medical relevance, but also causing life-threatening human envenomings without nominal clinical coverage. This work is part of a larger project aiming at mapping the immunological characteristics of antivenoms generated in Latin American countries towards venoms of such poorly studied snakes of the local and neighboring countries' herpetofauna. Here we report the proteomics characterization of the Manabi hognosed pitviper Porthidium arcosae endemic to the western coastal province of Manabí (Ecuador), and the Costa Rican hognosed pitviper P. volcanicum with distribution restricted to southwestern Costa Rica, the antivenomics assessment of three bothropoid commercial antivenoms produced in Costa Rica, Perú, and Brazil against the venom components of P. arcosae, and the in vivo capacity of the Brazilian soro antibotrópico pentavalente (SAB) from Instituto Butantan to neutralize the murine lethality of P. arcosae venom. The preclinical paraspecific ED50 of 31.3 mg of P. arcosae venom per gram of antivenom points to Brazilian SAB as a promising candidate for the treatment of envenomings by the Manabi hognosed pitviper P. arcosae.
URI : https://www.scopus.com/record/display.uri?eid=2-s2.0-85116833150&origin=inward&txGid=4ef08defc21c52e43e3ca2519714bce4
URI Fuente: https://www.sciencedirect.com/journal/journal-of-proteomics/vol/250/suppl/C
ISSN : 1874-3919
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