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Author

Xiaojuan Lei

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Aug 2026

Self-assembled proanthocyanidin-Iron microspheres with multilayer alginate coating for effective inhibition of advanced glycation end-products.

This study proposes a novel strategy to overcome the trade-off between high inhibitory activity against Advanced glycation end-products and processing stability of natural polyphenols by designing proanthocyanidin‑iron microspheres. These microspheres were fabricated via coordination-driven self-assembly of iron ions and proanthocyanidins, followed by coating with sodium alginate. Characterization using scanning electron microscopy, Raman spectroscopy, X-ray diffraction, X-ray photoelectron spectroscopy, Fourier transform infrared spectroscopy, and ultraviolet-visible spectroscopy revealed the structural characteristics and interfacial interactions of the microspheres. Molecular docking simulations verified a high-affinity interaction between proanthocyanidins and bovine serum albumin, with a binding free energy difference of 3.30 kcal/mol. In a biscuit model, the microspheres exhibited dose-dependent inhibition of fluorescent advanced glycation end-products(58.7%)at the highest tested concentration. This work establishes proanthocyanidin‑iron microspheres as a potential functional food ingredient with anti-glycation properties, providing a viable strategy for dietary intervention by controlling deleterious compounds in processed foods.

Dong Chen, Zhi-Yu Huang, Xing-Ru Wang et al. · 0 citations
Aug 2026

Structure-dependent modulation of Morchella esculenta protein by ferulic and chlorogenic acids: Improving techno-functionality and digestibility of a fungal alternative protein.

Fungal proteins face poor processing functionality and low digestibility limiting their use in emulsified and structured foods. Here, Morchella esculenta protein (MP) was modified by ferulic acid (FA) and chlorogenic acid (CA) at 0.0375-1 mg/mL. Both phenolics bound MP concentration-dependently, CA exhibited stronger binding affinity (Ka = 3.242 × 106 L/Mol) and deeper conformational rearrangement, while FA relied on hydrophobic and π-π interactions. Moderate phenolic addition maximized MP performance: EAI rose from 2.44 to 3.99 m2/g and digestibility from 45.33% to 58.31%, with CA delivering superior antioxidant capacity (DPPH scavenging 69.67%). Excess phenolics triggered severe protein aggregation and weakened interfacial stability. This work clarifies structure-dependent differential regulation of MP by two phenolics, defines optimal concentration thresholds, and provides theoretical support for clean-label fungal protein food ingredients.

Ying He, Z. Rao, Ziang Tian et al. · 0 citations