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◆ Journal of Nanobiotechnology2025-12-07· Biosafety

Magnesium-doped Zr-porphyrin MOF nanoarchitecture with pH/photo dual stimuli-responsiveness for targeted pesticides and improved biosafety

Hongwei Li, Yang Gao, Xiquan Ding, Ze Lv, Yu Fang, Zheng Zhang, Teng Wu, Yingjian Ma, Xinyu Guo, Rui Zhao, Meng Yu, Yong Xu, Xuemin Wu

原始摘要(英文原文)· Original abstract
BACKGROUND: Conventional pesticide formulations often exhibit poor utilization efficiency, rapid photodegradation, and ecological persistence, which severely limit their field efficacy. Herein, we report a dual pH/light stimuli-responsive delivery system based on magnesium-doped zirconium-porphyrin metal-organic frameworks (MOFs) for the targeted control of rice sheath blight (Rhizoctonia solani). RESULTS: doping and polydopamine-assisted prochloraz (Pro) encapsulation produced functional PCN-222(Mg)@Pro@PDA architectures with high loading capacity (21.08%) and mesoporous structure. Mg-N coordination modulated the porphyrinic electronic configuration, facilitating charge separation and enhancing light-driven reactive oxygen species generation. The formulation exhibited first-order release kinetics, with accelerated liberation (74.1% after 24 h) under acidic microenvironments (pH 5.0). Compared to the commercial Pro-EC, the nanoformulation achieved a 23% reduction in leaf contact angle, approximately 3.1-fold improvement in rainfastness, and 38.5% lower EC₅₀ against R. solani. Biosafety evaluations revealed higher zebrafish LC₅₀ (4.08 mg L⁻¹) and > 95% rice germination, confirming reduced ecotoxicity and phytotoxicity. CONCLUSIONS: This study presents a sustainable nano-agrochemical strategy that integrates precise pathogen control with environmental protection, offering a promising direction for the next generation of intelligent pesticide delivery systems.
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Magnesium-doped Zr-porphyrin MOF nanoarchitecture with pH/photo dual stimuli-responsiveness for targeted pesticides and improved biosafety — 科研速览 Science Skim