数字农科院2.0

A unimolecule nanopesticide delivery system applied in field scale for enhanced pest control

文献类型: 外文期刊

作者: Xingye Li;Xinyue Wang;Changjiao Sun;Anqi Wang;Changcheng An;Ningjun Li;Yue Shen;Jiachong Hu;Huihui Liu;Jing Xie;Dan Luo;Yan Wang

作者机构:

关键词: nanopesticide

期刊名称: Nature Communications

ISSN: 2041-1723

年卷期: 2025 年 16 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: Nanopesticides provide immense potential in reducing pesticide use and promoting sustainable agriculture for their enhanced pesticidal efficacy. Nano-enabled delivery systems can enhance pesticide penetration into both insects and leaves through their unique nanoproperties, in particular their small size. However, it remains a great challenge to achieve unimolecular formulations in water-based processes in order to take full advantages of nanoproperties. Here, using ionic liquid, we fabricate unimolecular nanopesticides (about 3 nm in average diameter) in a water-based process, termed unimolecule-nanopesticide delivery system. Guided by the density functional theory calculations, we successfully convert various traditional pesticides into the unimolecule-nanopesticide system, significantly enhancing cellular uptake, insect-dermis translocation, and leaf-cuticle penetration of pesticides. Furthermore, we improved field efficacy against multiple pests using the unimolecule-nanopesticide system. Importantly, the unimolecule-nanopesticide system utilizes only industry-grade raw materials that are Generally Recognized as Safe by the US Food and Drug Administration. We believe our unimolecule-nanopesticide system represents a water-based and facile-manufactured platform for other conventional pesticides to achieve high-efficiency field-scale plant protection.

分类号:

  • 相关文献

[1]pH-Responsive On-Demand Alkaloids Release from Core-Shell ZnO@ZIF-8 Nanosphere for Synergistic Control of Bacterial Wilt Disease. Wenlong Liang,Jingli Cheng,Jiadong Zhang,Qiuyu Xiong,Maojun Jin,Jinhao Zhao. 2022

[2]Self-Assembled Sphere Covalent Organic Framework with Enhanced Herbicidal Activity by Loading Cyhalofop-butyl. Xile Deng,Pengyue Zhao,Yong Xie,Lianyang Bai. 2023

[3]Self-assembled thiophanate-methyl/star polycation complex prevents plant cell-wall penetration and fungal carbon utilization during cotton infection by Verticillium dahliae. Xiaofeng Su,Shuo Yan,Weisong Zhao,Haiyang Liu,Qinhong Jiang,Ying Wei,Huiming Guo,Meizhen Yin,Jie Shen,Hongmei Cheng. 2023

[4]Nanopesticide Formulation from Pyraclostrobin and Graphene Oxide as a Nanocarrier and Application in Controlling Plant Fungal Pathogens. Fei Peng,Xiuping Wang,Wenjing Zhang,Xuejuan Shi,Caihong Cheng,Wenlong Hou,Xiaohu Lin,Xiaolu Xiao,Jun Li. 2022

[5]Multifunctional Nanoparticles and Nanopesticides in Agricultural Application. Jiaming Yin,苏晓峰,Shuo Yan,Jie Shen. 2023

[6]Self-Assembly Mechanism of Avermectin B1a and Its Activity against Potato Rot Nematode. Xu, Weibing,Chu, Shengjing,Pan, Fei,Wang, Rourou,Long, Haitao,Pu, Lumei,Li, Huixia. 2024

[7]Size-dependent Effect on Foliar Utilization and Biocontrol Efficacy of Emamectin Benzoate Delivery Systems. Ding, Xiquan,Gao, Fei,Chen, Long,Zeng, Zhanghua,Zhao, Xiang,Wang, Yan,Cui, Haixin,Cui, Bo. 2024

[8]The key factors of solid nanodispersion for promoting the bioactivity of abamectin. Ding X.,Gao F.,Cui B.,Du Q.,Zeng Z.,Zhao X.,Sun C.,Wang Y.,Cui H.. 2024

[9]Downsizing gum Arabic-based abamectin particles using flash nanoprecipitation method for enhanced pesticide deposition. Enguang Ma,Jianing Yi,Yekai Song,Hui Li,Longlong Geng,Chenkang Zhang,Hui Hu,Zhinan Fu,Baoyong Zhu,Xuhong Guo. 2024

[10]New Insights into Occupational Exposure and Risk Assessment of Nanopesticides and Conventional Pesticides for Agricultural Workers. Wang, Kuan,Zhang, Wenbo,Gao, Haixiang,Pan, Xinglu,Wu, Xiaohu,Xu, Jun,Zheng, Yongquan,Yu, Manli,Dong, Fengshou. 2024

[11]Glutathione and Laccase Dual-Responsive Lignin Nanocarriers Inspired by Host-Pathogen Interactions for Fungicide Delivery. Liang, Wenlong,Cheng, Jingli,Liu, Lianmeng,Zhao, Jinhao,Wurm, Frederik R.. 2025

[12]Tebuconazole residue in wheat and food risks: Comparison among nano and conventional formulations. Kuan Wang,Manli Yu,Haixiang Gao,Xinglu Pan,Xiaohu Wu,Jun Xu,Yongquan Zheng,Fengshou Dong. 2025

[13]MPN-Modified Bimetallic ZIF Nanopesticide Enhances Dinotefuran Loading Efficiency and Synergistically Controls Pesticide Residue and Insecticidal Activity. Sheng, Bin,Zhang, Ying,Yang, Kexin,Wen, Xiaobin,Lin, Zhihao,Wu, Zhijian,Zhang, Yaowei,Zhou, Jie,Ye, Xueling,Wang, Miao,Chen, Ge,Liu, Guangyang,Xu, Xiaomin,Yang, Xin,Jiao, Bining,Xu, Donghui. 2025

[14]Size effects of lufenuron-loaded ZIF-8 nanoparticles on target deposition and insecticidal activity. Liu, Hongyi,Sun, Heqin,Wenjie, Shanguan,Zhao, Pengyue,Cao, Chong,Huang, Qiliang,Cao, Lidong. 2025

[15]A Leaf-Adhesive, pH-Responsive Emamectin Benzoate Nanopesticide for Enhanced Efficacy and Reduced Toxicity. Yang, Ming,Wang, Jie,Wang, Bo,Wang, Tengda,An, Changcheng,Wang, Yan,Wang, Yilin. 2026

[16]Structural regulation of β-ketoenamine covalent organic framework as efficient and environment-friendly nanocarrier for herbicide Dicamba. Xiaoxu Ma,Jing Ning,Jianping Zhang,Mingxin Liu,Lidong Cao,Qiliang Huang,Long Hao,Chong Cao. 2025

作者其他论文 更多>>