College of Agriculture and Biology, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China.
Guangdong Biological Pesticide Engineering Technology Research Center, South China Agricultural University, Guangzhou 510642, China.
Int J Biol Macromol. 2022 Dec 1;222(Pt A):188-197. doi: 10.1016/j.ijbiomac.2022.09.144. Epub 2022 Sep 20.
Controlled pesticide release in response to environmental stimuli by encapsulating pesticides in a carrier is a feasible approach to improve the effective utilization rate. In this study, pH-responsive release nanoparticles loaded with penconazole (PE) were prepared by ionic cross-linking of chitosan and carboxymethyl chitosan (PE@CS/CMCS-NPs). PE@CS/CMCS-NPs exhibited good washout resistance and wettability properties, increasing the washing resistance of the pesticide by approximately 20 times under continuous washing. The results of the release experiments showed that nanoparticles had adjustable controlled-release characteristics with the change in pH based on the swelling of nanoparticles. The results of spore germination experiments showed that PE@CS/CMCS-NPs enhanced the inhibitory effect under acidic conditions. The field experiment results showed that PE@CS/CMCS-NPs had a better control effect than PE-aqueous solution, extended the duration and slowed down the dissipation of PE. These results indicated that the CS/CMCS-NPs pH-responsive release system has great potential in the development of an effective pesticide formulation.
通过将杀虫剂封装在载体中以响应环境刺激来控制杀虫剂的释放,是提高有效利用率的一种可行方法。本研究通过壳聚糖和羧甲基壳聚糖的离子交联制备了载有苯醚甲环唑(PE)的 pH 响应释放纳米颗粒(PE@CS/CMCS-NPs)。PE@CS/CMCS-NPs 表现出良好的耐洗性和润湿性,在连续洗涤下,农药的耐洗性提高了约 20 倍。释放实验结果表明,纳米颗粒具有基于纳米颗粒溶胀的可调 pH 控制释放特性。孢子萌发实验结果表明,PE@CS/CMCS-NPs 在酸性条件下增强了抑制效果。田间试验结果表明,PE@CS/CMCS-NPs 比 PE 水溶液具有更好的控制效果,延长了 PE 的持效期并减缓了其消解速度。这些结果表明,CS/CMCS-NPs pH 响应释放系统在开发有效的农药制剂方面具有巨大的潜力。