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多功能阿维菌素聚琥珀酰亚胺纳米粒子的研制,以提高水稻中的生物活性和运输效率。

Development of Multifunctional Avermectin Poly(succinimide) Nanoparticles to Improve Bioactivity and Transportation in Rice.

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources , South China Agricultural University , Guangzhou , Guangdong 510642 , China.

College of Materials and Energy , South China Agricultural University , Guangzhou , Guangdong 510642 , China.

出版信息

J Agric Food Chem. 2018 Oct 31;66(43):11244-11253. doi: 10.1021/acs.jafc.8b03295. Epub 2018 Oct 18.

Abstract

Avermectin (AVM) as a nonsystemic pesticide possesses a low effective utilization rate. Studies of the multifunctional pesticide delivery system for improving biological activity are developing prosperously. In this study, multifunctional avermectin/polysuccinimide with glycine methyl ester nanoparticles (AVM-PGA) were prepared by the self-assembly process. The AVM loading capacity was up to 23.7%. After 24 h of UV irradiation, there was still about 70% of AVM remaining in PGA nanocarriers, as opposed to less than 5% of the free-form AVM. The rising ambient pH promoted the release of AVM using an in vitro releasing test, revealing a favorable pH-responsively controlled-release property. The mortality rate of Plutella xylostella with 2.5 μg/mL of AVM content of AVM-PGA was 96.3% after 48 h, while that of free AVM was only 51.5%. In addition, the AVM could be detected in stems and all leaves treated with AVM-PGA nanoparticles, whereas rare AVM was detected only in treated leaves for the free-form AVM, which achieved the transportation of nanocarriers carrying AVM in rice for the first time. Furthermore, the PGA nanoparticles performed a good growth promoting effect on rice. These results show that the AVM-PGA nanopesticides have a great potential application prospect to control the pest and improve the drug utilization efficiency on agriculture.

摘要

阿维菌素(AVM)作为一种非系统性农药,有效利用率低。研究多功能农药输送系统以提高生物活性的工作正在蓬勃发展。本研究通过自组装过程制备了多功能阿维菌素/聚琥珀酰亚胺与甘氨酸甲酯纳米粒子(AVM-PGA)。AVM 的负载能力高达 23.7%。经过 24 h 的紫外线照射后,PGA 纳米载体中仍有约 70%的 AVM 残留,而游离形式的 AVM 残留不到 5%。体外释放试验表明,环境 pH 值的升高促进了 AVM 的释放,具有良好的 pH 响应性控制释放特性。含有 2.5 μg/mL AVM 含量的 AVM-PGA 对小菜蛾的致死率在 48 h 后达到 96.3%,而游离 AVM 的致死率仅为 51.5%。此外,用 AVM-PGA 纳米粒子处理的茎和所有叶片中都能检测到 AVM,而游离 AVM 仅在处理过的叶片中检测到,这在水稻中首次实现了载有 AVM 的纳米载体的运输。此外,PGA 纳米粒子对水稻表现出良好的促进生长作用。这些结果表明,AVM-PGA 纳米农药具有很大的潜在应用前景,可以控制害虫并提高农业用药效率。

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