结合
化学
前药
嘧霉胺
杀虫剂
纳米颗粒
组合化学
生物利用度
溶剂
核化学
纳米技术
有机化学
材料科学
生物化学
农学
生物
数学分析
生物信息学
数学
作者
Yuyang Tian,Yuqi Huang,Xiaohong Zhang,Gang Tang,Yunhao Gao,Zhiyuan Zhou,Yan Li,Huachen Wang,Xueyang Yu,Xuan Li,Yulu Liu,Guangyao Yan,Jialu Wang,Yongsong Cao
标识
DOI:10.1021/acs.jafc.2c04489
摘要
Self-assembled nanotechnology is a promising strategy for improving the effective utilization of pesticides due to its distinct advantages. Herein, an amide-bonded prodrug conjugate based on pyrimethanil (PYR) and butyric acid (BA) was successfully synthesized by the nucleophilic substitution reaction and subsequently self-assembled into spherical nanoparticles (PB NPs) with an average size of 85 nm through the solvent exchange method without using any toxic adjuvant. The results showed that PB NPs based on PYR and BA had a synergistic antimicrobial activity against S. sclerotiorum on plant leaves due to good photostability, low volatilization, good surface activity, and improved retention. Additionally, PB NPs could be used by plant cells as nutrients to promote the growth of plants and thus reduced the toxicity of PYR to plant. Therefore, this prodrug conjugate self-assembly nanotechnology would provide a promising strategy for improving the effective utilization rates of pesticides and reducing their toxicities to plants.
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