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pH/redox dual responsive from natural polymer-based nanoparticles for on-demand delivery of pesticides

化学 阿维菌素 氧化还原 生物利用度 纳米颗粒 杀虫剂 环境污染 聚乙二醇化 控制释放 组合化学 环境化学 有机化学 纳米技术 材料科学 药理学 环境科学 生物 聚乙二醇 环境保护 生态学 解剖
作者
Ming Zhao,Peiquan Li,Hongjun Zhou,Li Hao,Huayao Chen,Xinhua Zhou
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:435: 134861-134861 被引量:168
标识
DOI:10.1016/j.cej.2022.134861
摘要

With the increase in global food demand and the destruction of environment, the development of sustainable agriculture has become increasingly more important. Stimuli-responsive controlled-release agrochemicals enhance the bioavailability of active ingredients and reduce the frequency of use and environmental pollution. Herein, 3,3′-dithiodipropionic acid was used as a functional bridge to covalently link the degradable natural polymer zein and chitosan oligosaccharides (CS) to prepare a water-dispersed environmentally friendly pesticide carrier. Subsequently, via hydrophobic and hydrogen bonding interactions photo-decomposable avermectin (AVM) was encapsulated forming a stimuli-responsive intelligent nanopesticide delivery system ([email protected]) was developed by encapsulating in the carrier. AVM was released slowly from [email protected] particles in a neutral condition and was released rapidly under stimulation of glutathione and alkalinity in simulated insects. The photostability of [email protected] was improved by 6-fold compared with that of AVM and the nanoparticles had good adherence to the leaves, slowly releasing AVM and avoiding the light decomposition of active ingredients. When the pests ingest the leaves containing [email protected], the rapid disintegration of the nanoparticles in vivo leads to a good insecticidal effect and the control rate of [email protected] on Plutella xylostella was higher than that of AVM. After 120 h of UV irradiation, the pest mortality rate of [email protected] was 46.7% while that of AVM and AVM emulsifiable concentrate was only 13.3% and 20.0%, respectively. Therefore, this pH/redox dual stimuli-responsive nanopesticide formulation achieves target control of pests and provides an efficient nanoplatform for green agriculture.
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