Bioactivity of gallic acid–conjugated silica nanoparticles against <i>Paenibacillus larvae</i> and their host, <i>Apis mellifera</i> honeybee

The aim of this work was to evaluate antimicrobial activity against <i>Paenibacillus larvae</i> and oral toxicity against workers and larvae of <i>Apis mellifera</i> of gallic acid (GA) and two nanohybrids of GA and silica. Also, the physicochemical, structural, and energetic...

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Detalles Bibliográficos
Autores: Domínguez, Enzo, Moliné, María P., Churio, María Sandra, Arce, Valeria Beatriz, Mártire, Daniel Osvaldo, Álvarez, Brenda S., Gende, Liesel Brenda, Damiani, Natalia
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2019
País:Argentina
Institución:Universidad Nacional de La Plata
Repositorio:SEDICI (UNLP)
Idioma:inglés
OAI Identifier:oai:sedici.unlp.edu.ar:10915/124801
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/124801
Access Level:acceso abierto
Palabra clave:Ciencias Exactas
Ingeniería
Apis mellifera
Paenibacillus larvae
gallic acid
silica nanohybrid
Descripción
Sumario:The aim of this work was to evaluate antimicrobial activity against <i>Paenibacillus larvae</i> and oral toxicity against workers and larvae of <i>Apis mellifera</i> of gallic acid (GA) and two nanohybrids of GA and silica. Also, the physicochemical, structural, and energetic properties of GA and the nanohybrids were determined through structure–activity relationship (SAR). The minimum inhibitory concentration (MIC) against <i>P. larvae</i> was determined. GA showed MIC values between 62.5 and 125 μg/ml, whereas the nanoparticle functionalized through the GA carboxylic moiety (NP2) showed the best antimicrobial activity with a MIC value of 23 μg GA/ml for four of the five isolates used. SAR analysis showed that electronegativity, chemical hardness, and dipolar moment are reliable estimators of the antimicrobial activity. NP2 showed the lowest toxicity against workers and was innocuous for bee larvae. Therefore, the nanohybrid NP2 was the best antibacterial and resulted in non-toxic against workers and larvae of honeybees, becoming a potentially effective and safe agent for the treatment of American Foulbrood disease.