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载丁香酚颗粒的自组装以调节载体在叶片上的附着,以实现高效的叶面应用和生态毒理学安全性。

Self-assembly of eugenol-loaded particles to regulate the adhesion of carriers on leaves for efficient foliar applications and ecotoxicological safety.

机构信息

Department of Nutrition and Food Hygiene, School of Public Health, Shandong First Medical University & Shandong Academy of Medical Sciences, Tai'an, Shandong 271016, PR China; Shandong Provincial Key Laboratory for Biology of Vegetable Diseases and Insect Pests, College of Plant Protection, Shandong Agricultural University, Tai'an, Shandong 271018, PR China.

Shandong Provincial Key Laboratory for Biology of Vegetable Diseases and Insect Pests, College of Plant Protection, Shandong Agricultural University, Tai'an, Shandong 271018, PR China.

出版信息

Ecotoxicol Environ Saf. 2023 Nov 15;267:115602. doi: 10.1016/j.ecoenv.2023.115602. Epub 2023 Oct 26.

Abstract

Currently, there is a pressing need to develop an agrochemical-loaded system that is both uncomplicated and efficient, thereby enhancing the adhesion of agrochemical to leaf surfaces and optimizing their insecticidal efficacy, while concurrently mitigating environmental risks. The flexible eugenol-loaded particles were synthesized via a one-step polyurethane self-assembly reaction, utilizing polyethylene glycol (PEG) as the soft segment and 4,4-diphenylmethane diisocyanate (MDI) as the hard segment. The increase in the length of the soft segment enhances the flexibility of the particles, thereby improving the contact area and adhesion with the foliar surface. When flexible particles are applied on the foliar surface, they can achieve satisfactory resistance to rainfall erosion. When the PEG molecular weight is 800, the residual concentration of eugenol can still reach 42.11% after 6 washes. The carrier protects the active ingredients and improves the resistance to ultraviolet irradiation. After 5 h of ultraviolet irradiation, the concentration of eugenol remained at 59.03% when PEG with a molecular weight of 200 was employed. Greenhouse experiments showed that the flexible transformation of particles greatly enhanced the application effect of spray on the foliar surface of particles. After undergoing three washes, the mortality of the particles can be enhanced by 5.4-8.4 times compared to that of emulsion concentrate (EC) sample. The enhancement of leaf retention performance reduces environmental risks caused by pesticide loss. Meanwhile, the controlled release of particles also reduces the acute toxicity to zebrafish. The toxicity selection pressure of the EUG@P800-Ps sample is 10.6 times that of the EC sample. In conclusion, the preparation process of the system is simple, and the flexible transformation is an effective strategy to improve the foliar application effect of spray and improve the environmental safety.

摘要

目前,迫切需要开发一种既简单又高效的农药负载系统,以增强农药在叶片表面的附着力并优化其杀虫效果,同时降低环境风险。通过一步聚氨酯自组装反应,利用聚乙二醇(PEG)作为软段,4,4-二苯基甲烷二异氰酸酯(MDI)作为硬段,合成了负载灵活的丁香酚颗粒。软段长度的增加提高了颗粒的柔韧性,从而增加了与叶面的接触面积和附着力。当将柔性颗粒施加到叶面时,它们可以实现令人满意的耐雨水侵蚀性。当 PEG 分子量为 800 时,经过 6 次洗涤后,丁香酚的残留浓度仍可达到 42.11%。载体保护了活性成分,提高了抗紫外线辐射的能力。当使用分子量为 200 的 PEG 时,经过 5 小时的紫外线照射,丁香酚的浓度仍保持在 59.03%。温室实验表明,颗粒的柔性转化大大增强了喷雾在颗粒叶面的应用效果。经过三次洗涤后,与乳液浓缩剂(EC)样品相比,颗粒的死亡率可提高 5.4-8.4 倍。叶保留性能的提高降低了因农药损失而导致的环境风险。同时,颗粒的控释也降低了对斑马鱼的急性毒性。EUG@P800-Ps 样品的毒性选择压力是 EC 样品的 10.6 倍。总之,该系统的制备过程简单,柔性转化是提高喷雾叶面应用效果和提高环境安全性的有效策略。

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