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天然松香改性羧甲基纤维素长效控虫递药系统,降低毒性。

Natural rosin modified carboxymethyl cellulose delivery system with lowered toxicity for long-term pest control.

机构信息

Innovative Institute for Plant Health, Key Laboratory of Agricultural Green Fine Chemicals of Guangdong Higher Education Institution, School of Chemistry and Chemical Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou, Guangdong, 510225, People's Republic of China.

Innovative Institute for Plant Health, Key Laboratory of Agricultural Green Fine Chemicals of Guangdong Higher Education Institution, School of Chemistry and Chemical Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou, Guangdong, 510225, People's Republic of China.

出版信息

Carbohydr Polym. 2021 May 1;259:117749. doi: 10.1016/j.carbpol.2021.117749. Epub 2021 Feb 4.

Abstract

The increasing world-wide demand for food has prompted the development of efficient and environmentally friendly pesticide formulations. In this article, we have prepared CMC-g-PRSG carrier based on two compounds from natural materials carboxymethyl cellulose (CMC) and rosin (RS). The model pesticide avermectin (AVM) was encapsulated through hydrophobic interaction, and self-assembled to form nanopesticide AVM@CMC-g-PRSG with an average particle size of 167 nm. The prepared nanopesticide displays enhanced dispersibility and stability of AVM in water, and can effectively adhere to the leaves to prevent loss. The release rate of AVM encapsulated in the nanocarrier can be controlled by adjusting pH, and AVM half-life under ultraviolet radiation shows a 3-fold increase allowing control of pests for prolonged periods of time in practical applications. Biological safety tests showed that AVM@CMC-g-PRSG effectively reduces the toxicity of AVM to aquatic animals. Therefore, the cheap and degradable carrier CMC-g-PRSG can improve the effect of hydrophobic pesticides.

摘要

世界范围内对食物的需求不断增加,促使人们开发出高效、环保的农药制剂。在本文中,我们以两种天然材料羧甲基纤维素(CMC)和松香(RS)为原料,制备了 CMC-g-PRSG 载体。通过疏水相互作用包封模型农药阿维菌素(AVM),并自组装形成平均粒径为 167nm 的纳米农药 AVM@CMC-g-PRSG。所制备的纳米农药提高了 AVM 在水中的分散性和稳定性,能够有效地附着在叶片上防止流失。通过调节 pH 值可以控制纳米载体中包封的 AVM 的释放速率,并且在紫外辐射下 AVM 的半衰期增加了 3 倍,这使得在实际应用中可以长时间控制害虫。生物安全测试表明,AVM@CMC-g-PRSG 有效降低了 AVM 对水生动物的毒性。因此,廉价且可生物降解的载体 CMC-g-PRSG 可以提高疏水性农药的效果。

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