杀菌剂
灰葡萄孢菌
超分子化学
化学
苯并咪唑
菌丝体
药物输送
草酸
纳米技术
控制释放
材料科学
植物
有机化学
生物
晶体结构
作者
Chaoyi Wang,Yuqing Liu,Jia Chen,Mingzhe Zhang,Chun-Li Song,Chao Xu,Ran Hao,Jianchun Qin,Ying‐Wei Yang
标识
DOI:10.1016/j.cclet.2023.108400
摘要
The construction of an integrated nanoplatform with controlled fungicide delivery features in the specific microenvironment produced by fungal pathogens is a highly desirable strategy to improve the utilization of fungicides. Herein, we report a supramolecular fungicide delivery system based on benzimidazole-modified NH2-MIL-101(Fe) metal–organic frameworks (B-MIL-101(Fe) MOFs) as carriers loaded with osthole (OS), and β-cyclodextrin (β-CD) as nanovalves to form β[email protected](Fe)-OS. The nanoplatform can release the loaded OS for fungus control through self-degradation of the MOFs skeleton in an oxalic acid microenvironment produced by Botrytis cinerea. The experimental results exhibit that the constructed supramolecular fungicide delivery system could effectively inhibit mycelial growth and protect the tomatoes from infection by B. cinerea during the ripening stage. This strategy constructs a facile and integrated supramolecular drug delivery system for B. cinerea control and opens up a new avenue for the sustainable development of modern agriculture.
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