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基于生物的粘附肽功能化微凝胶用于农药的控制释放。

Adhesion Peptide-Functionalized Biobased Microgels for Controlled Delivery of Pesticides.

机构信息

DWI - Leibniz-Institute for Interactive Materials, Forckenbeckstrasse 50, 52056, Aachen, Germany.

Institute of Technical and Macromolecular Chemistry, RWTH Aachen University, Worringerweg 2, 52074, Aachen, Germany.

出版信息

Angew Chem Int Ed Engl. 2024 Jul 1;63(27):e202319832. doi: 10.1002/anie.202319832. Epub 2024 May 28.

Abstract

Widespread use of plant protection agents in agriculture is a major cause of pollution. Apart from active ingredients, the environmental impact of auxiliary synthetic polymers should be minimized if they are highly persistent. An alternative to synthetic polymers is the use of natural polysaccharides, which are abundant and biodegradable. In this study, we explore pectin microgels functionalized with anchor peptides (P-MAPs) to be used as an alternative biobased pesticide delivery system. Using copper as the active ingredient, P-MAPs effectively prevented infection of grapevine plants with downy mildew under semi-field conditions on par with commercial copper pesticides. By using anchor peptides, the microgels tightly bind to the leaf surface, exhibiting excellent rain fastness and prolonged fungicidal activity. Finally, P-MAPs are shown to be easily degradable by enzymes found in nature, demonstrating their negligible long-term impact on the environment.

摘要

农业中广泛使用的植保剂是造成污染的主要原因之一。如果辅助合成聚合物具有很强的持久性,则应尽量减少其对环境的影响。合成聚合物的替代品是使用天然多糖,这些多糖丰富且可生物降解。在这项研究中,我们探索了用锚定肽(P-MAPs)功能化的果胶微凝胶,将其用作替代生物基农药输送系统。使用铜作为活性成分,P-MAPs 在半田间条件下有效防止了葡萄藤植物感染霜霉病,效果与商业铜农药相当。通过使用锚定肽,微凝胶紧密结合在叶片表面,表现出优异的耐雨水冲刷性和延长的杀菌活性。最后,证明 P-MAPs 很容易被自然界中发现的酶降解,表明它们对环境的长期影响可忽略不计。

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