阿维菌素
草酸盐
杀虫剂
化学
菜蛾
生物测定
纤维素
核化学
材料科学
毒理
色谱法
生物化学
有机化学
生物
解剖
植物
生殖器鳞翅目
农学
遗传学
作者
Haonan Zhang,Bin Yu,Yun Fang,Zhengang Xie,Qiuyu Xiong,Donglai Zhang,Jing‐Li Cheng,Qunzhen Guo,Yehua Su,Jinhao Zhao
标识
DOI:10.1016/j.carbpol.2024.122553
摘要
The requirement to improve the efficiency of pesticide utilization has led to the development of sustainable and smart stimuli-responsive pesticide delivery systems. Herein, a novel avermectin nano/micro spheres (AVM@HPMC-Oxalate) with sensitive stimuli-response function target to the Lepidoptera pests midgut microenvironment (pH 8.0–9.5) was constructed using hydroxypropyl methylcellulose (HPMC) as the cost-effective and biodegradable material. The avermectin (AVM) loaded nano/micro sphere was achieved with high AVM loading capacity (up to 66.8 %). The simulated release experiment proved the rapid stimuli-responsive and pesticides release function in weak alkaline (pH 9) or cellulase environment, and the release kinetics were explained through release models and SEM characterization. Besides, the nano/micro sphere size made AVM@HPMC-Oxalate has higher foliar retention rate (1.6–2.1-fold higher than commercial formulation) which is beneficial for improving the utilization of pesticides. The in vivo bioassay proved that AVM@HPMC-Oxalate could achieve the long-term control of Plutella xylostella by extending UV shielding performance (9 fold higher than commercial formulation). After 3 h of irradiation, the mortality rate of P. xylostella treated by AVM@HPMC-Oxalate still up to 56.7 % ± 5.8 %. Moreover, AVM@HPMC-Oxalate was less toxic to non-target organisms, and the acute toxicity to zebrafish was reduced by 2-fold compared with AVM technical.
科研通智能强力驱动
Strongly Powered by AbleSci AI