Department of Applied Chemistry, College of Science, China Agricultural University, Beijing, China.
Pest Manag Sci. 2023 Oct;79(10):3808-3818. doi: 10.1002/ps.7565. Epub 2023 Jun 8.
Some traditional pesticide formulations are inefficient, leading to excessive use and abuse of pesticides, which in turn effects environment. Intelligent release pesticide formulations are ideal for improving pesticide utilization and persistence while reducing environmental pollution.
We designed a benzil-modified chitosan oligosaccharide (CO-BZ) to encapsulate avermectin (Ave). Ave@CO-BZ nanocapsules are prepared based on a simple interfacial method via cross-linking of CO-BZ with diphenylmethane diisocyanate (MDI). The Ave@CO-BZ nanocapsules have an average particle size of 100 nm and exhibited a responsive release performance for ROS. The cumulative release rate of nanocapsules at 24 h with ROS increased by about 11.4% compared to that without ROS. The Ave@CO-BZ nanocapsules displayed good photostability. Ave@CO-BZ nanocapsules can penetrate root-knot nematodes more easily and exhibited better nematicidal activity against root-knot nematodes. The pot experiment showed that the control effect of Ave CS at low concentration was 53.31% at the initial stage of application (15 d), while Ave@CO-BZ nanocapsules was 63.54%. Under the same conditions, the control effect of Ave@CO-BZ nanocapsules on root-knot nematodes was 60.00% after 45 days of application, while Ave EC was only 13.33%. The acute toxicity experiments of earthworms showed that the toxicity of nanocapsules was significantly lower than that of EC.
The ROS-responsive nanocapsules can improve the utilization of pesticides and non-target biosafety. This modified chitosan oligosaccharide has great potential as a bio stimuli-responsive material, and this simple and convenient method for preparing Ave@CO-BZ nanocapsules provides a direction for the effective utilization of pesticides. © 2023 Society of Chemical Industry.
一些传统的农药制剂效率低下,导致农药的过度使用和滥用,从而影响环境。智能释放农药制剂是提高农药利用率和持久性、同时减少环境污染的理想选择。
我们设计了一种苯甲酰化壳聚糖寡糖(CO-BZ)来包裹阿维菌素(Ave)。Ave@CO-BZ 纳米胶囊是通过 CO-BZ 与二苯基甲烷二异氰酸酯(MDI)交联,基于简单的界面方法制备的。Ave@CO-BZ 纳米胶囊的平均粒径为 100nm,并表现出对 ROS 的响应释放性能。与没有 ROS 相比,纳米胶囊在 24 小时时的累积释放率增加了约 11.4%。Ave@CO-BZ 纳米胶囊具有良好的光稳定性。Ave@CO-BZ 纳米胶囊可以更容易地穿透根结线虫,并表现出对根结线虫更好的杀线虫活性。盆栽试验表明,Ave CS 在低浓度下的防治效果在施药初期(15d)为 53.31%,而 Ave@CO-BZ 纳米胶囊为 63.54%。在相同条件下,Ave@CO-BZ 纳米胶囊对根结线虫的防治效果在施药 45d 后为 60.00%,而 Ave EC 仅为 13.33%。对蚯蚓的急性毒性试验表明,纳米胶囊的毒性明显低于 EC。
ROS 响应性纳米胶囊可以提高农药的利用率和非靶标生物安全性。这种改性壳聚糖寡糖具有作为生物刺激响应材料的巨大潜力,并且这种制备 Ave@CO-BZ 纳米胶囊的简单方便的方法为有效利用农药提供了一个方向。© 2023 化学工业协会。