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具有遮光性能的缓释木质素阿维菌素纳米递药系统的制备与评价。

Fabrication and evaluation of slow-release lignin-based avermectin nano-delivery system with UV-shielding property.

机构信息

Guangxi Key Laboratory of Natural Polymer Chemistry and Physics, College of Chemistry and Material Science, Nanning Normal University, Nanning, 530001, People's Republic of China.

Guangxi Tianyuan Biochemical Co. Ltd., Nanning, 530001, People's Republic of China.

出版信息

Sci Rep. 2021 Dec 1;11(1):23248. doi: 10.1038/s41598-021-02664-7.

Abstract

Nanopesticide is one of the best pesticide formulation technologies to overcome the disadvantages of traditional pesticides, which has received great attention from the international community. Using high-speed emulsification and ultrasonic dispersion technology, an avermectin nano-delivery system (Av-NDs) with a particle size of 80-150 nm was prepared through embedding the pesticide molecule utilizing the cross-linking reaction between sodium lignosulfonate and p-phenylenediamine diazonium salt. The formulation and composition of Av-NDs were optimized, the morphology of Av-NDs was analyzed by scanning electron microscope, transmission electron microscope and dynamic light scattering, and the structure of Av-NDs was characterized by UV, IR and H NMR. Anti-photolysis and controlled-release tests show that the stability of Av-NDs is 3-4 times of the original avermectin (Av) and possesses the pH-responsive controlled release property. Furthermore, the insecticidal activity of Av-NDs is better than that of avermectin suspension concentrate (Av-SC). The Av-NDs with anti-photolysis and controlled-release characteristics is suitable for large-scale industrial production and is capable to be utilized as effective insecticide in the field.

摘要

纳米农药是克服传统农药缺点的最佳农药制剂技术之一,受到国际社会的高度关注。利用高速乳化和超声分散技术,通过交联反应将农药分子嵌入到木质素磺酸钠和对苯二胺重氮盐之间,制备出粒径为 80-150nm 的阿维菌素纳米递药系统(Av-NDs)。对 Av-NDs 的配方和组成进行了优化,通过扫描电子显微镜、透射电子显微镜和动态光散射分析了 Av-NDs 的形态,通过紫外、红外和氢核磁共振对 Av-NDs 的结构进行了表征。抗光解和控制释放试验表明,Av-NDs 的稳定性是原始阿维菌素(Av)的 3-4 倍,具有 pH 响应控制释放性能。此外,Av-NDs 的杀虫活性优于阿维菌素悬浮剂(Av-SC)。具有抗光解和控制释放特性的 Av-NDs 适合大规模工业化生产,可作为田间有效杀虫剂使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7725/8636473/a95bc499be60/41598_2021_2664_Fig1_HTML.jpg

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