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Characterization and evaluation of avermectin solid nanodispersion prepared by microprecipitation and lyophilisation techniques

机译:通过微沉淀和冻干技术制备的阿维菌素固体纳米分散体的表征和评估

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摘要

Poorly water-soluble and photosensitive pesticide compounds are difficult to formulate as solvent-free nanoformulations with high efficacy. A avermectin solid nanodispersion with a mean particle size of 188 nm was developed by microprecipitation and lyophilisation techniques. The suspensibility and wetting time of the solid nanodispersion in water were 99.8% and 13 s, respectively, superior to those of conventional water dispersible granules and wettable powders. The anti-photolysis performance of the nanoformulation was twice that of the technical material, and the biological activity against diamondback moths was more than 1.5 times that of the conventional solid formulations while taking LC 50 as the evaluation index. Moreover, the formulation composition substantially decreased the surfactant content and avoided organic solvents. Microprecipitation combined with lyophilisation is an easy and promising method to construct solid nanoformulations for pesticides with poor water solubility and environmental sensitivity. The application of the highly effective solid nanodispersion in crop production will have a great potential in reducing chemical residues and environmental pollution.
机译:难溶于水的光敏农药化合物很难配制成高效的无溶剂纳米制剂。通过微沉淀和冻干技术开发了平均粒径为188 nm的阿维菌素固体纳米分散体。固体纳米分散体在水中的悬浮度和润湿时间分别为99.8%和13 s,优于常规的水分散性颗粒和可湿性粉剂。以LC 50为评价指标,纳米制剂的抗光解性能是工业材料的两倍,对小菜蛾的生物活性是传统固体制剂的1.5倍以上。此外,该制剂组合物显着降低了表面活性剂含量并避免了有机溶剂。微沉淀与冻干相结合是一种简便且有前途的方法,可用于为水溶性和环境敏感性差的农药构建固体纳米制剂。高效的固体纳米分散体在作物生产中的应用将在减少化学残留物和环境污染方面具有巨大潜力。

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