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尺寸依赖性对二酰胺类杀虫剂聚乳酸微球传递系统防治玉米螟的可控释放和田间杀虫效果的影响。

Size-dependent effect on controllable release and field insecticidal efficacy of diamide insecticide polylactic acid microspheres delivery systems against Ostrinia nubilalis.

机构信息

Key Laboratory of Agri-Food Safety of Anhui Province, School of Resources and Environment, Anhui Agricultural University, Hefei, Anhui 230036, China.

Key Laboratory of Green Pesticide and Agricultural Bio-engineering, Ministry of Education, Guizhou University, Guiyang, Guizhou 550025, China.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 1):134659. doi: 10.1016/j.ijbiomac.2024.134659. Epub 2024 Aug 12.

DOI:10.1016/j.ijbiomac.2024.134659
PMID:39128754
Abstract

New nano/microcarriers of pesticides represent a highly promising novel field for sustainable pest management. However, despite extensive laboratory research, few studies on the design and evaluation of nanopesticides for field applications exist. In this study, we present a straightforward and green synthetic method of ultrasonic-assisted and hydrogen-bonded self-assembly at the oil-water interface for the synthesis of polylactic acid (PLA) microspheres encapsulating chlorantraniliprole (CAP), with precise control over the size of the microspheres. The resulting CAP-loaded PLA microspheres (CAP-PLA MS) exhibit both high pesticide encapsulation efficiency and stability in natural environments. It has been determined that non-Fickian diffusion mainly controls pesticide release, thus enabling dynamic control over molecular transport speeds. Importantly, our functional CAP-PLA MS demonstrates superior sustained pesticide release performance under both laboratory and field conditions while maintaining better exceptional insecticidal efficacy than normal CAP in controlling O. nubilalis at a concentration of 30 or 45 g/ha. Consequently, we propose that our functional PLA microspheres could serve as ideal pesticide carriers in the sustained treatment of O. nubilalis.

摘要

新型农药纳米/微载体代表了可持续害虫管理极具前景的新领域。然而,尽管实验室研究广泛,但对于用于田间应用的纳米农药的设计和评估的研究很少。在本研究中,我们提出了一种简单而绿色的超声辅助和氢键在油水界面自组装的方法,用于合成包封氯虫苯甲酰胺(CAP)的聚乳酸(PLA)微球,可精确控制微球的尺寸。所得载 CAP 的 PLA 微球(CAP-PLA MS)表现出高农药包封效率和在自然环境中的稳定性。已确定非菲克扩散主要控制农药释放,从而能够动态控制分子传输速度。重要的是,我们的功能性 CAP-PLA MS 在实验室和田间条件下均表现出优异的持续农药释放性能,同时在控制 30 或 45 g/ha 浓度下的烟青虫时,其杀虫效果优于普通 CAP。因此,我们提出我们的功能性 PLA 微球可用作持续处理烟青虫的理想农药载体。

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