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基于多巴胺功能化海藻酸盐和烷基聚葡萄糖苷制备载有啶虫脒的网络连接胶束以增强叶片沉积和滞留

Fabricating Network-Link Acetamiprid-Loading Micelles Based on Dopamine-Functionalized Alginate and Alkyl Polyglucoside To Enhance Folia Deposition and Retention.

作者信息

Wen Qiyan, Huang Junhao, Tang Haiyun, He Furui, Yuan Jijie, Wan Sihui, Liu Haifang, Zeng Qu, Feng Yuhong, Yu Gaobo, Li Jiacheng

机构信息

Key Laboratory of Advanced Materials of Tropical Island Resources of Ministry of Education and School of Chemical Engineering and Technology, Hainan University, Haikou, Hainan 570228, China.

出版信息

J Agric Food Chem. 2022 Mar 30;70(12):3596-3607. doi: 10.1021/acs.jafc.1c07324. Epub 2022 Mar 21.

DOI:10.1021/acs.jafc.1c07324
PMID:35311267
Abstract

The development of an eco-friendly nanopesticide formulation can alleviate the problems of low pesticide utilization and environmental pollution. However, the development of green nanopesticide carriers with ideal physical properties and specific bioavailability is still a challenging task at present. In this study, we propose a novel binary additive pesticide carrier system that is a functional polysaccharide-based polymer/surfactant (Alg-DA/APG) to improve the deposition and retention of pesticide droplets. The self-assembled micelle morphology of Alg-DA/APG and its effect on the apparent viscosity were investigated by transmission electron microscopy (TEM) and a Discovery HR-2 rotational rheometer. Surface tension was carried out to investigate the surface activity and critical micelle concentration (CMC) of Alg-DA/APG. The drop impacting experiments exhibited superior antisplash performance of Alg-DA/APG. Furthermore, a binary additive was used as the carrier material and loaded acetamiprid to prepare nanopesticide formulation Ace@Alg-DA/APG. The encapsulation efficiency (EE) and acetamiprid release behavior from Ace@Alg-DA/APG were also studied. Moreover, the dynamic contact angle (DCA) and retention experiment showed that the DCA and wetting radius at 600 s were, respectively, 6.8 ± 2.39° and 4.044 ± 0.0662 mm for the Ace@0.05 wt % Alg-DA/0.05 wt % APG on the banana foliage surface, and its retention rates on foliage surface were up to 74.80% after washing. The novel binary additive as a nanopesticide carrier has the potential to alleviate the problems of low pesticide utilization and environmental pollution in the future.

摘要

开发一种环保型纳米农药制剂可以缓解农药利用率低和环境污染的问题。然而,目前开发具有理想物理性质和特定生物利用度的绿色纳米农药载体仍然是一项具有挑战性的任务。在本研究中,我们提出了一种新型二元添加剂农药载体系统,即基于功能性多糖的聚合物/表面活性剂(Alg-DA/APG),以提高农药液滴的沉积和滞留。通过透射电子显微镜(TEM)和Discovery HR-2旋转流变仪研究了Alg-DA/APG的自组装胶束形态及其对表观粘度的影响。进行表面张力测试以研究Alg-DA/APG的表面活性和临界胶束浓度(CMC)。液滴撞击实验表明Alg-DA/APG具有优异的防溅性能。此外,使用二元添加剂作为载体材料并负载啶虫脒以制备纳米农药制剂Ace@Alg-DA/APG。还研究了Ace@Alg-DA/APG的包封率(EE)和啶虫脒释放行为。此外,动态接触角(DCA)和滞留实验表明,香蕉叶片表面上Ace@0.05 wt% Alg-DA/0.05 wt% APG在600 s时的DCA和润湿半径分别为6.8±2.39°和4.044±0.0662 mm,洗涤后其在叶片表面的滞留率高达74.80%。这种新型二元添加剂作为纳米农药载体在未来有可能缓解农药利用率低和环境污染的问题。

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