前药
化学
Zeta电位
浸出(土壤学)
农药
表面张力
酪氨酸
两亲性
生物物理学
水溶液
纳米颗粒
生物利用度
亲脂性
粒径
药理学
水介质
可转让性
纳米技术
染色体易位
组合化学
广谱
作者
Lanqi Chen,Yinghao Huang,Jianhua Xiao,Xiaohong Zhang,Weiyao Yan,Guo Q,Xiaohan Meng,Mingyang Cai,Bingjia Chen,S Liu,Gang Tang,Yongsong Cao
标识
DOI:10.1021/acsanm.6c03181
摘要
Herbicides, owing to their advantages of convenience, high efficiency, and cost-effectiveness, have become an indispensable tool in modern agricultural production. However, low utilization efficiency caused by the inherent physicochemical limitations of some herbicides leads to potential risks to the environment and human health. Herein, an amphipathic prodrug (CT) was synthesized by conjugating lipophilic carfentrazone (CAR) with hydrophilic tyrosine (TYR) via an esterification reaction and subsequently self-assembled into CT nanoparticles (CT NPs) through multiple noncovalent forces in an aqueous solution. The results showed that the obtained CT NPs, with remarkable stability under various conditions, possessed excellent physicochemical characteristics, including a small particle size (150 nm), low PDI (0.228), positive zeta potential (+8.99 mV), and low surface tension (54.81 mN m –1 ), thereby improving wettability and maximum retention on weed leaves, as well as reducing soil leaching of CAR WDG. Importantly, owing to the introduction of the tyrosine moiety, CT NPs exhibited acropetal and basipetal translocation ability in the plant and superior herbicidal efficacy compared to CAR WDG, while showing good biosafety toward wheat and maize seedlings. Therefore, this study offers a promising strategy for designing herbicide nanoformulations with enhanced efficacy and improved environmental safety.
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