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纳米载体包封的植物农药喜树碱对秋黏虫的协同作用机制:增强稳定性和放大生长抑制。

Synergistic mechanism of botanical pesticide camptothecin encapsulated in a nanocarrier against fall armyworm: Enhanced stability and amplified growth suppression.

机构信息

College of Plant Protection, China Agricultural University, Beijing 100193, PR China; Sanya Institute of China Agricultural University, Sanya 572000, PR China.

College of Plant Protection, China Agricultural University, Beijing 100193, PR China.

出版信息

Ecotoxicol Environ Saf. 2024 Oct 1;284:116900. doi: 10.1016/j.ecoenv.2024.116900. Epub 2024 Aug 20.

Abstract

Botanical pesticides are one of the most promising alternatives to synthetic insecticides for green pest management. However, their efficacies must be further improved to meet real needs. Here we designed a nanoscale camptothecin (CPT) encapsulated in a star polycation (SPc) and determined its bioactivity against a devastating agricultural pest, Spodoptera frugiperda. The self-assembly of CPT/SPc complex was mainly driven by hydrogen bonding and Van der Waals forces to decrease the particle size from 789 to 298 nm. With the help of SPc, the contact angle of CPT decreased from 116° to 92° on maize leaves, and its retention was increased from 5.53 to 11.97 mg/cm. The stability of SPc-loaded CPT was also improved in an alkaline environment, which is beneficial for its acting in lepidopteran insect guts. The CPT/SPc complex had stronger larvicidal activity and ovicidal activity against S. frugiperda than CPT alone, led to more complex transcriptomic changes in larvae, and had obvious adverse impacts on the activities of two digestive enzymes. Our findings demonstrated that the encapsulation of CPT by SPc-based nanodelivery system enabled better insecticidal activities against S. frugiperda, which holds great promise for the development of more efficient and sustainable pest control strategies to meet the demands of modern crop protection.

摘要

植物源农药是替代合成杀虫剂进行绿色害虫治理最有前途的方法之一。然而,为了满足实际需求,其功效必须进一步提高。在这里,我们设计了一种纳米级喜树碱(CPT)封装在星型聚阳离子(SPc)中,并确定了其对破坏性农业害虫玉米螟的生物活性。CPT/SPc 复合物的自组装主要是由氢键和范德华力驱动的,从而将粒径从 789nm 减小到 298nm。在 SPc 的帮助下,CPT 在玉米叶片上的接触角从 116°降低到 92°,保留量从 5.53mg/cm 增加到 11.97mg/cm。载有 CPT 的 SPc 的稳定性在碱性环境中也得到了提高,这有利于其在鳞翅目昆虫肠道中的作用。CPT/SPc 复合物对玉米螟的杀虫活性和杀卵活性均强于单独的 CPT,导致幼虫的转录组变化更为复杂,对两种消化酶的活性有明显的不良影响。我们的研究结果表明,CPT 被 SPc 基纳米递药系统包封后,对玉米螟的杀虫活性增强,为开发更高效、更可持续的害虫防治策略提供了巨大的潜力,以满足现代作物保护的需求。

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