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Please use this identifier to cite or link to this item: http://dspace.ucuenca.edu.ec/handle/123456789/38187
Title: Gallic acid anti-myotoxic activity and mechanism of action, a snake venom phospholipase A2 toxin inhibitor, isolated from the medicinal plant Anacardium humile
Authors: Fontes, Marcos R.M.
Florenca Cardoso, Fábio
Moreira Dill, Leandro S.
Fernandes, Carlos
Severo Gomes, Antoniel Augusto
Guimaraes, César
Marcussi, Silvana
Pereira , Paulo S.
Costa, Tássia
Da Silva, Saulo Luis
Zuliani, Juliana P.
Aleff Ferreira, Francisco
Soares, Andreimar Martins
Oliveira, Hamine Cristina de
Keywords: Phospholipase A2 inhibitor
Gallic acid
Snake venoms
metadata.dc.ucuenca.areaconocimientofrascatiamplio: 1. Ciencias Naturales y Exactas
metadata.dc.ucuenca.areaconocimientofrascatidetallado: 1.4.1 Química Orgánica
metadata.dc.ucuenca.areaconocimientofrascatiespecifico: 1.4 Ciencias Químicas
metadata.dc.ucuenca.areaconocimientounescoamplio: 05 - Ciencias Físicas, Ciencias Naturales, Matemáticas y Estadísticas
metadata.dc.ucuenca.areaconocimientounescodetallado: 0522 - Medio Ambiente y Vida Silvestre
metadata.dc.ucuenca.areaconocimientounescoespecifico: 052 - Medio Ambiente
Issue Date: 2021
metadata.dc.ucuenca.embargoend: 30-Dec-2050
metadata.dc.ucuenca.volumen: Volumen 185
metadata.dc.source: International Journal of Biological Macromolecules
metadata.dc.identifier.doi: 10.1016/j.ijbiomac.2021.06.163
metadata.dc.type: ARTÍCULO
Abstract: 
Snakebite envenoming is the cause of an ongoing health crisis in several regions of the world, particularly in tropical and neotropical countries. This scenario creates an urgent necessity for new practical solutions to address the limitations of current therapies. The current study investigated the isolation, phytochemical characterization, and myotoxicity inhibition mechanism of gallic acid (GA), a myotoxin inhibitor obtained from Anacardium humile. The identification and isolation of GA was achieved by employing analytical chromatographic separation, which exhibited a compound with retention time and nuclear magnetic resonance spectra compatible with GA's commercial standard and data from the literature. GA alone was able to inhibit the myotoxic activity induced by the crude venom of Bothrops jararacussu and its two main myotoxins, BthTX-I and BthTX-II. Circular dichroism (CD), fluorescence spectroscopy (FS), dynamic light scattering (DLS), and interaction studies by molecular docking suggested that GA forms a complex with BthTX-I and II. Surface plasmon resonance (SPR) kinetics assays showed that GA has a high affinity for BthTX-I with a KD of 9.146 × 10−7 M. Taken together, the two-state reaction mode of GA binding to BthTX-I, and CD, FS and DLS assays, suggest that GA is able to induce oligomerization and secondary structure changes for BthTX-I and -II. GA and other tannins have been shown to be effective inhibitors of snake venoms' toxic effects, and herein we demonstrated GA's ability to bind to and inhibit a snake venom PLA2, thus proposing a new mechanism of PLA2 inhibition, and presenting more evidence of GA's potential as an antivenom compound.
URI: http://dspace.ucuenca.edu.ec/handle/123456789/38187
https://www.scopus.com/record/display.uri?eid=2-s2.0-85109659936&origin=resultslist&sort=plf-f&src=s&st1=Gallic+acid+anti-myotoxic+activity+and+mechanism+of+action%2c+a+snake+venom+phospholipase+A2+toxin+inhibitor%2c+isolated+from+the+medicinal+plant+Anacardium+humile&sid=84e1a6861f1e8f0d964efc2419d2e301&sot=b&sdt=b&sl=174&s=TITLE-ABS-KEY%28Gallic+acid+anti-myotoxic+activity+and+mechanism+of+action%2c+a+snake+venom+phospholipase+A2+toxin+inhibitor%2c+isolated+from+the+medicinal+plant+Anacardium+humile%29&relpos=0&citeCnt=2&searchTerm=&featureToggles=FEATURE_NEW_DOC_DETAILS_EXPORT:1
metadata.dc.ucuenca.urifuente: https://www.sciencedirect.com/journal/international-journal-of-biological-macromolecules/vol/185/suppl/C
ISSN: 0141-8130
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