Institute of Environment and Sustainable Development in Agriculture , Chinese Academy of Agricultural Sciences , Beijing 100081 , People's Republic of China.
J Agric Food Chem. 2018 Jul 5;66(26):6578-6584. doi: 10.1021/acs.jafc.7b01998. Epub 2017 Aug 1.
Pesticides are chemical or biological substances to control pests and protect the crop yield. Most pesticides suffering from large amounts of losses in the environment lead to damage of ecological systems and food pollution. To reduce their losses and increase the utilization rate, we have developed bioinspired mussel avermectin nanoparticles [P(St-MAA)-Av-Cat] with strong adhesion to crop foliage by the emulsion-solvent evaporation method and chemical modification. They were near spheres with a diameter of around 120 nm. They displayed remarkable high avermectin content of more than 50% (w/w) and presented excellent storage stability as well as continuous sustained release. The photosensitive avermectins loaded were highly improved against ultraviolet light. Meanwhile, the retention rate of P(St-MAA)-Av-Cat on the crop foliage surfaces was significantly increased. As a result, the indoor toxicity of P(St-MAA)-Av-Cat was highly enhanced. The adhesive property strongly depended upon the functional groups on the nanoparticle surface. The multimodal binding mode of P(St-MAA)-Av-Cat to the crop foliage surface resulted in stronger adhesion and a longer retention time.
农药是用于控制害虫和保护作物产量的化学或生物物质。大多数农药在环境中大量损失,导致生态系统受损和食物污染。为了减少它们的损失并提高利用率,我们通过乳液溶剂蒸发法和化学修饰开发了具有强烈粘附作物叶片能力的仿生贻贝阿维菌素纳米粒子[P(St-MAA)-Av-Cat]。它们呈近球形,直径约为 120nm。它们显示出超过 50%(w/w)的高阿维菌素含量,具有出色的储存稳定性和持续的缓释性能。负载的光敏感阿维菌素对紫外线的抵抗力得到了极大提高。同时,P(St-MAA)-Av-Cat 在作物叶片表面的保留率显著增加。结果,P(St-MAA)-Av-Cat 的室内毒性得到了极大提高。粘附性能强烈取决于纳米粒子表面的官能团。P(St-MAA)-Av-Cat 对作物叶片表面的多模式结合模式导致更强的粘附力和更长的保留时间。