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◆ Journal of agricultural and food chemistry2026-08-26

Self-Assembled Metal-Phenolic-Agar Microparticle-Derived Coatings Enable Scalable and Sustainable Fresh Produce Preservation.

Ivy Chiu, Mohammad Kamali, Qingshi Tu, Tianyu Wang, David D Kitts, Xiwen Wang, Ling Guo, Tianxi Yang

原始摘要(英文原文)· Original abstract
The burden of food waste highlights the need for effective, scalable preservation strategies. Herein, we developed a natural, biocompatible, plant-based, and consumer-friendly metal-phenolic-agar (MPN-Agar) coating for postharvest preservation. The coating was formed through coordination between micronutrient ions (e.g., Zn2+, Mg2+, Ca2+, and Fe3+) and tannic acid within an agar matrix, producing stable microscale colloidal particles. Applied to strawberries, grapes, and apple slices, the coating extended shelf life by at least 2-fold. In strawberries, it reduced 4 day weight loss from 30.59% to 13.36% and increased firmness from 18.53 to 41.77 N. The coating also showed antibacterial activity, no cytotoxicity in Caco-2 cells, easy removal by water rinsing, and compatibility with food-grade agar. Notably, MPN-Agar coating under room-temperature storage outperformed uncoated refrigeration for strawberries, suggesting potential to reduce cold-chain reliance. Life cycle assessment showed lower carbon footprint and freshwater ecotoxicity than refrigeration, supporting its potential as a sustainable preservation alternative.
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Self-Assembled Metal-Phenolic-Agar Microparticle-Derived Coatings Enable Scalable and Sustainable Fresh Produce Preservation. — 科研速览 Science Skim