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◆ International journal of biological macromolecules2026-09-18

pH cycling-induced structural remodeling of walnut protein-whey protein isolate complex: Trade-off between digestibility and bioactivity.

Jingjing Ma, Weijun Wang, Yumeng Chen, Yuhang Liu, Han Zhang, Qian He, Yanhua Li

原始摘要(英文原文)· Original abstract
The bioactivity of plant proteins is often limited by the compact and aggregated structures. In this study, the walnut protein-whey protein isolate (WP-WPIp) complex was constructed via pH cycling. This treatment appeared to induce conformational changes characterized by a disordering of secondary structures and a disruption of tertiary folds, which may have exposed hydrophobic residues and reduced steric hindrance. Structural remodeling enhanced digestibility, with the complex reaching a hydrolysis degree of 78.78% versus 73.12% for native WP, likely facilitating enzymatic accessibility. Bioactivity assessments revealed a structure-dependent trade-off. Antioxidant capacity (DPPH and ABTS) and xanthine oxidase inhibition (up to 35.09% gastric phase) were synergistically enhanced whereas sodium taurocholate binding and cholesterol esterase inhibition decreased, likely due to reduced surface hydrophobicity. Digestion products also showed moderate α-amylase and α-glucosidase inhibition. This study elucidates the complex interplay between conformation and multifunctionality providing insights for high-value plant protein utilization through precision structural design.
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pH cycling-induced structural remodeling of walnut protein-whey protein isolate complex: Trade-off between digestibility and bioactivity. — 科研速览 Science Skim