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TNB 在苯甲酰脲类杀虫剂(灭幼脲、噻虫啉和噻虫嗪)和增效剂复配的双光控释放中的应用。

Application of TNB in dual photo-controlled release of phenamacril, imidacloprid, and imidacloprid synergist.

机构信息

Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology, Shanghai, China.

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, China.

出版信息

Photochem Photobiol. 2024 Nov-Dec;100(6):1813-1826. doi: 10.1111/php.13934. Epub 2024 Mar 6.

Abstract

Pesticides can improve crops' yield and quality, but unreasonable applications of pesticides lead to waste of pesticides which are further accumulated in the environment and threaten human health. Developing the release of controlled drugs can improve the utilization rate of pesticides. Among these methods, light-controlled release is a new technology of controlled release, which can realize spatiotemporal delivery of drugs by light. Four compounds, named Imidacloprid-Thioacetal o-nitrobenzyl-Phenamacril (IMI-TNB-PHE), Imidacloprid-Thioacetal o-nitrobenzyl- Imidacloprid (IMI-TNB-IMI), Phenamacril-Thioacetal o-nitrobenzyl-Phenamacril (PHE-TNB-PHE), and Imidacloprid-Thioacetal o-nitrobenzyl-Imidacloprid Synergist (IMI-TNB-IMISYN), were designed and synthesized by connecting thioacetal o-nitrobenzyl (TNB) with pesticides TNB displaying simple and efficient optical properties in this work. Dual photo-controlled release of pesticides including two molecules of IMI or PHE, both IMI and PHE, as well as IMI and IMISYN were, respectively, studied in this paper. Insecticidal/fungicidal activities of the photosensitive pesticides showed 2-4 times increments if they were exposed to light. In addition, a synergistic effect was observed after the light-controlled release of IMI-TNB-IMISYN, which was consistent with the effect of IMISYN. The results demonstrated whether dual photo-controlled release of the same or different pesticide molecules could be achieved with a TNB linker with spatiotemporal precision. We envisioned that TNB will be an innovative photosensitive protective group for light-dependent application of agrochemicals in the future.

摘要

农药可以提高作物的产量和质量,但不合理的农药应用会导致农药浪费,进而在环境中积累,威胁人类健康。开发控释农药的释放可以提高农药的利用率。在这些方法中,光控释放是一种新的控释技术,可以通过光实现药物的时空传递。本工作设计并合成了四种化合物,分别为噻虫胺-硫代缩醛-o-硝基苄基-噻虫嗪(IMI-TNB-PHE)、噻虫胺-硫代缩醛-o-硝基苄基-噻虫胺(IMI-TNB-IMI)、苯甲酰基-硫代缩醛-o-硝基苄基-苯甲酰基(PHE-TNB-PHE)和噻虫胺-硫代缩醛-o-硝基苄基-噻虫胺增效剂(IMI-TNB-IMISYN),通过连接噻虫胺硫代缩醛-o-硝基苄基(TNB)与农药 TNB,使其具有简单高效的光学性能。本文分别研究了包括两种分子 IMI 或 PHE、IMI 和 PHE 以及 IMI 和 IMISYN 在内的两种农药的双重光控释放。如果这些光敏感农药暴露在光下,杀虫/杀菌活性会增加 2-4 倍。此外,在光控释放 IMI-TNB-IMISYN 后观察到协同作用,这与 IMISYN 的作用一致。结果表明,TNB linker 可以实现相同或不同农药分子的双重光控释放,具有时空精度。我们设想,TNB 将成为未来光依赖性应用农药的一种创新光敏保护基团。

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