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由苯甲酰基苯基脲和β-环糊精包合物形成的疏水性纳米沉淀:合成、表征及其对幼虫的毒性

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

作者信息

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

机构信息

Department of Pharmacy, Federal University of Juiz de Fora (UFJF), Campus Governador Valadares, Postal Code: 35010-177, Governador Valadares, Minas Gerais, Brazil.

Department of Basic Life Sciences, Federal University of Juiz de Fora (UFJF), Campus Governador Valadares, Postal Code: 35010-177, Governador Valadares, Minas Gerais, Brazil.

出版信息

Heliyon. 2019 Jul 5;5(7):e02013. doi: 10.1016/j.heliyon.2019.e02013. eCollection 2019 Jul.

Abstract

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 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. 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.

摘要

本研究旨在合成并表征由β-环糊精(βCD)与苯甲酰基苯基脲类(BPUs)杀虫剂(即诺瓦隆(NOV)和敌百虫隆(DIF))络合形成的包合物,并评估其对幼虫的杀幼虫活性。傅里叶变换红外光谱(FTIR)的固态表征显示BPUs和βCD的主要峰位发生了变化,表明在固相中形成了包合物。差示热分析(DTA)和热重分析(TGA)表明,由于分子间相互作用,BPUs的分解温度发生了变化。核磁共振氢谱(1H NMR)实验通过观察BPUs芳香氢化学位移的变化,得以观测溶液中相互作用的发生。然而,仅在DIF/βCD络合物的二维旋转 Overhauser 效应光谱(2D ROESY)中发现了H-H分子间相关性,这表明每种络合物的拓扑结构不同。等温滴定量热法(ITC)的热力学分析证实了这一假设,该分析显示滴定曲线的形状不同,NOV/βCD和DIF/βCD络合物分别存在吸热和放热相互作用。在水溶液中对BPUs或BPUs/βCD二甲基亚砜(DMSO)溶液进行动态光散射(DLS)滴定表明,自发形成的疏水性纳米沉淀(HNP)的尺寸分布因BPU/βCD体系而异,这也证实了每种络合物存在不同拓扑结构的假设。最后,包合物的HNP显示出比游离BPUs更高效,从而有可能提出一种新的杀虫剂配方。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7391/6612800/a5f7b2fc59d2/gr1.jpg

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