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Hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae

The aim of this work was to synthesize and characterize the inclusion compounds formed by the complexation of β-cyclodextrin (βCD) with insecticides from the class of benzoylphenylureas (BPUs), named novaluron (NOV) and diflubenzuron (DIF), beyond evaluate their larvicidal activity against Aedes aeg...

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Autores principales: Bittencourt, Vanessa Cristina Estevam, Moreira, Ana Maria dos Santos, da Silva, Jeferson Gomes, Gomides, Antônio Frederico de Freitas, Velloso-Rodrigues, Cibele, Kelmann, Regina Gendzzelevski, Mendonça, Leonardo Meneghin, Lula, Ivana Silva, Denadai, Ângelo Márcio Leite
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6612800/
https://www.ncbi.nlm.nih.gov/pubmed/31321326
http://dx.doi.org/10.1016/j.heliyon.2019.e02013
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author Bittencourt, Vanessa Cristina Estevam
Moreira, Ana Maria dos Santos
da Silva, Jeferson Gomes
Gomides, Antônio Frederico de Freitas
Velloso-Rodrigues, Cibele
Kelmann, Regina Gendzzelevski
Mendonça, Leonardo Meneghin
Lula, Ivana Silva
Denadai, Ângelo Márcio Leite
author_facet Bittencourt, Vanessa Cristina Estevam
Moreira, Ana Maria dos Santos
da Silva, Jeferson Gomes
Gomides, Antônio Frederico de Freitas
Velloso-Rodrigues, Cibele
Kelmann, Regina Gendzzelevski
Mendonça, Leonardo Meneghin
Lula, Ivana Silva
Denadai, Ângelo Márcio Leite
author_sort Bittencourt, Vanessa Cristina Estevam
collection PubMed
description The aim of this work was to synthesize and characterize the inclusion compounds formed by the complexation of β-cyclodextrin (βCD) with insecticides from the class of benzoylphenylureas (BPUs), named novaluron (NOV) and diflubenzuron (DIF), beyond evaluate their larvicidal activity against Aedes aegypti larvae. Solid state characterization by FTIR showed changes in the main peaks of BPUs and βCD, suggesting the formation of inclusion compounds in solid phase. DTA and TGA thermal analysis showed changes in temperatures of BPUs decomposition as result of molecular interactions. (1)H NMR experiments allowed to observe the occurrence of interactions in solution through changes in chemical shifts of BPUs aromatic hydrogens. However, the presence of H–H intermolecular correlations in 2D ROESY was found only for the DIF/βCD complex, suggesting different topology for each complex. Such hypothesis was corroborated by thermodynamic analysis using ITC, which showed different profile of titration curves, beyond endothermic and exothermic interactions for NOV/βCD and DIF/βCD complexes, respectively. DLS titrations of BPUs or BPUs/βCD DMSO solutions in aqueous solution demonstrated that the spontaneously formed hydrophobic nanoprecipitates (HNPs) have different profile of sizes depending on the BPU/βCD system, corroborating also with the hypothesis about the existence of different topologies for each complex. Finally, the HNPs of inclusion compounds showed to be more efficient than free BPUs, allowing proposing a new insecticide formulation.
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spelling pubmed-66128002019-07-18 Hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae Bittencourt, Vanessa Cristina Estevam Moreira, Ana Maria dos Santos da Silva, Jeferson Gomes Gomides, Antônio Frederico de Freitas Velloso-Rodrigues, Cibele Kelmann, Regina Gendzzelevski Mendonça, Leonardo Meneghin Lula, Ivana Silva Denadai, Ângelo Márcio Leite Heliyon Article The aim of this work was to synthesize and characterize the inclusion compounds formed by the complexation of β-cyclodextrin (βCD) with insecticides from the class of benzoylphenylureas (BPUs), named novaluron (NOV) and diflubenzuron (DIF), beyond evaluate their larvicidal activity against Aedes aegypti larvae. Solid state characterization by FTIR showed changes in the main peaks of BPUs and βCD, suggesting the formation of inclusion compounds in solid phase. DTA and TGA thermal analysis showed changes in temperatures of BPUs decomposition as result of molecular interactions. (1)H NMR experiments allowed to observe the occurrence of interactions in solution through changes in chemical shifts of BPUs aromatic hydrogens. However, the presence of H–H intermolecular correlations in 2D ROESY was found only for the DIF/βCD complex, suggesting different topology for each complex. Such hypothesis was corroborated by thermodynamic analysis using ITC, which showed different profile of titration curves, beyond endothermic and exothermic interactions for NOV/βCD and DIF/βCD complexes, respectively. DLS titrations of BPUs or BPUs/βCD DMSO solutions in aqueous solution demonstrated that the spontaneously formed hydrophobic nanoprecipitates (HNPs) have different profile of sizes depending on the BPU/βCD system, corroborating also with the hypothesis about the existence of different topologies for each complex. Finally, the HNPs of inclusion compounds showed to be more efficient than free BPUs, allowing proposing a new insecticide formulation. Elsevier 2019-07-05 /pmc/articles/PMC6612800/ /pubmed/31321326 http://dx.doi.org/10.1016/j.heliyon.2019.e02013 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Bittencourt, Vanessa Cristina Estevam
Moreira, Ana Maria dos Santos
da Silva, Jeferson Gomes
Gomides, Antônio Frederico de Freitas
Velloso-Rodrigues, Cibele
Kelmann, Regina Gendzzelevski
Mendonça, Leonardo Meneghin
Lula, Ivana Silva
Denadai, Ângelo Márcio Leite
Hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae
title Hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae
title_full Hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae
title_fullStr Hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae
title_full_unstemmed Hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae
title_short Hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae
title_sort hydrophobic nanoprecipitates formed by benzoylphenylureas and β-cyclodextrin inclusion compounds: synthesis, characterization and toxicity against aedes aegypti larvae
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6612800/
https://www.ncbi.nlm.nih.gov/pubmed/31321326
http://dx.doi.org/10.1016/j.heliyon.2019.e02013
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