College of Chemistry and Chemical Engineering, Engineering Research Center of Dairy Quality and Safety Control Technology, Ministry of Education, Inner Mongolia University, Hohhot 010021, PR China.
College of Chemistry and Chemical Engineering, Engineering Research Center of Dairy Quality and Safety Control Technology, Ministry of Education, Inner Mongolia University, Hohhot 010021, PR China.
J Control Release. 2022 Dec;352:288-312. doi: 10.1016/j.jconrel.2022.10.028. Epub 2022 Oct 26.
Effective pest management for enhanced crop output is one of the primary goals of establishing sustainable agricultural practices in the world. Pesticides are critical in preventing biological disasters, ensuring crop productivity, and fostering sustainable agricultural production growth. Studies showed that crops are unable to properly utilize pesticides because of several limiting factors, such as leaching and bioconversion, thereby damaging ecosystems and human health. In recent years, stimuli-responsive systems for pesticides delivery (SRSP) by nanotechnology demonstrated excellent promise in enhancing the effectiveness and safety of pesticides. SRSP are being developed with the goal of delivering precise amounts of active substances in response to biological needs and environmental factors. An in-depth analysis of carrier materials, design fundamentals, and classification of SRSP were provided. The adhesion of SRSP to crop tissue, absorption, translocation in and within plants, mobility in the soil, and toxicity were also discussed. The problems and shortcomings that need be resolved to accelerate the actual deployment of SRSP were highlighted in this review.
有效防治害虫以提高作物产量是在世界范围内建立可持续农业实践的主要目标之一。在防止生物灾害、确保作物生产力和促进可持续农业生产增长方面,农药发挥着关键作用。研究表明,由于淋溶和生物转化等多种限制因素,作物无法正常利用农药,从而破坏了生态系统和人类健康。近年来,纳米技术刺激响应型农药输送系统(SRSP)在提高农药的有效性和安全性方面表现出了巨大的潜力。SRSP 的开发旨在根据生物需求和环境因素精确输送有效物质。本文深入分析了 SRSP 的载体材料、设计基础和分类。还讨论了 SRSP 与作物组织的黏附、吸收、在植物内外的转移、在土壤中的迁移以及毒性。本文强调了为加快 SRSP 的实际部署需要解决的问题和缺点。