Arunachalam Abinaya, Perraki Maria, Knegt Bram, Macel Mirka, Voigt Dagmar, Kamperman Marleen
Polymer Science, Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 3, 9747 AG Groningen, The Netherlands.
Aeres University of Applied Sciences, Arboretum West 98, 1325 WB, Almere, The Netherlands.
Chem Soc Rev. 2025 Jun 30;54(13):6525-6552. doi: 10.1039/d5cs00458f.
The growing demand for food due to a global population increase has made the use of pesticides in agriculture unavoidable despite their various harmful side effects. Driven by stricter legislation, nations are now compelled to find alternatives. This situation led to accelerated research around the world, focusing on developing new chemistries to enhance the environmental safety of pesticides. In recent years, bioinspired strategies of pest control have emerged as alternatives to the development of new synthetic pesticides. In order to design innovative eco-friendly pest management techniques, a thorough understanding of naturally existing physical and chemical defences in plants is needed. Building upon this knowledge, material science provides innovative strategies for designing physical barriers, biomimetic adhesives, and targeted delivery systems that go beyond traditional chemical approaches. This tutorial review explores the intricate relationships between plants and insects, focusing on natural defence mechanisms such as plant cuticles, trichomes, and thigmonasty. We also review advances in synthetic pesticide use, including enhanced adhesion and controlled release formulations. In addition, we delve into advances in other integrated pest management domains, discussing the potential of bioinspired surfaces and biological control methods. This overview aims to foster comprehensive understanding and interdisciplinary approaches, highlighting the pivotal role of material science in improving sustainable pest control for the future.
由于全球人口增长导致对食物的需求不断增加,尽管农药有各种有害的副作用,但在农业中使用农药已不可避免。在更严格的立法推动下,各国现在不得不寻找替代品。这种情况促使全球加快研究,重点是开发新的化学物质以提高农药的环境安全性。近年来,受生物启发的害虫防治策略已成为开发新型合成农药的替代方法。为了设计创新的环保害虫管理技术,需要深入了解植物中天然存在的物理和化学防御机制。基于这一知识,材料科学为设计物理屏障、仿生粘合剂和靶向递送系统提供了创新策略,超越了传统的化学方法。本教程综述探讨了植物与昆虫之间的复杂关系,重点关注植物角质层、毛状体和感触性等自然防御机制。我们还回顾了合成农药使用方面的进展,包括增强附着力和控释制剂。此外,我们深入探讨了其他综合害虫管理领域的进展,讨论了受生物启发的表面和生物防治方法的潜力。本综述旨在促进全面理解和跨学科方法,强调材料科学在改善未来可持续害虫防治方面的关键作用。
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