State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Ministerial and Provincial Joint Innovation Centre for Safety Production of Cross-Strait Crops, Key Lab of Biopesticide and Chemical Biology, Ministry of Education & Fujian Province Key Laboratory of Insect Ecology, College of Plant Protection, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, P. R. China.
College of Plant Protection, Key Laboratory of Pesticide Toxicology & Application Technique, Shandong Agricultural University, Tai'an, Shandong 271018, P. R. China.
ACS Appl Mater Interfaces. 2022 Sep 14;14(36):41337-41347. doi: 10.1021/acsami.2c10899. Epub 2022 Sep 2.
A strategy that relies on the differences in feeding behavior between pests and natural enemies to deliver insecticides precisely was proposed. After proving that the digestive enzymes in Lepidopteran pests can act as triggers for lignin-based controlled-release carriers, a novel multiple-enzyme-responsive lignin/polysaccharide/Fe nanocarrier was constructed by combining the electrostatic self-assembly and chelation and loaded with lambda-cyhalothrin (LC) to form a nanocapsule suspension loading system. The nanocapsules were LC@sodium lignosulfonate/chitosan/Fe (LC@SL/CS/Fe) and LC@sodium lignosulfonate/alkyl polyglycoside quaternary ammonium salt/Fe (LC@SL/APQAS/Fe). LC@SL/APQAS/Fe was more stable than LC@SL/CS/Fe because it adsorbs more Fe, and the half-lives of LC in LC@SL/APQAS/Fe under UV irradiation were prolonged at 4.02- and 6.03-folds than those of LC@SL/CS/Fe and LC emulsifiable concentrate (LC EC), respectively. Both LC@SL/APQAS/Fe and LC@SL/CS/Fe have responsive release functions to laccase and cellulase, and the release rate of the former was slower. The insecticidal activity of LC@SL/APQAS/Fe against was similar to those of LC@SL/CS/Fe and LC EC, while the toxicity of LC@SL/APQAS/Fe to the natural enemy was 2-3 times less than those of LC@SL/CS/Fe and LC EC. Meanwhile, the organic solvent component in the nanocapsule suspension was 94% less than that in the EC preparation. Therefore, the nano loading system based on SL/APQAS/Fe is a promising nanoplatform with the advantages of high efficiency, low toxicity, and environmental friendliness.
提出了一种依赖于害虫和天敌之间取食行为差异来精确传递杀虫剂的策略。在证明鳞翅目害虫的消化酶可以作为基于木质素的控释载体的触发物之后,通过静电自组装和螯合相结合,构建了一种新型的多酶响应木质素/多糖/Fe 纳米载体,并将氯氟氰菊酯(LC)负载到纳米载体上,形成纳米胶囊悬浮载药系统。纳米胶囊为 LC@sodium lignosulfonate/chitosan/Fe(LC@SL/CS/Fe)和 LC@sodium lignosulfonate/alkyl polyglycoside quaternary ammonium salt/Fe(LC@SL/APQAS/Fe)。LC@SL/APQAS/Fe 比 LC@SL/CS/Fe 更稳定,因为它吸附更多的 Fe,LC 在 LC@SL/APQAS/Fe 中的半衰期在紫外光照射下分别延长了 4.02 倍和 6.03 倍,而 LC@SL/CS/Fe 和 LC 乳油(LC EC)的半衰期分别延长了 4.02 倍和 6.03 倍。LC@SL/APQAS/Fe 和 LC@SL/CS/Fe 对漆酶和纤维素酶都具有响应释放功能,前者的释放速度较慢。LC@SL/APQAS/Fe 对的杀虫活性与 LC@SL/CS/Fe 和 LC EC 相似,而 LC@SL/APQAS/Fe 对天敌的毒性比 LC@SL/CS/Fe 和 LC EC 低 2-3 倍。同时,纳米胶囊悬浮液中的有机溶剂成分比 EC 制剂少 94%。因此,基于 SL/APQAS/Fe 的纳米载药系统是一种具有高效、低毒、环境友好等优点的有前途的纳米平台。