Related Experiment Video
Updated: Jan 9, 2026

A Freeze-Thawing Method to Prepare Chitosan-Polyvinyl alcohol Hydrogels Without Crosslinking Agents and Diflunisal Release Studies
Published on: January 14, 2020
Mechanisms of heat-activated soy protein isolate-chitosan oligosaccharide complexation: Synergistic interactions for
Wei Wan1, Rui Zhang1, Lingyi Gao1
1School of Food Science and Technology, Dalian Polytechnic University, Dalian, 116034, China; National Engineering Research Center of Seafood, Dalian, 116034, China; State Key Laboratory of Marine Food Processing & Safety Control, Dalian Polytechnic University, Dalian, 116034, China; Liaoning Key Laboratory of Food Nutrition and Health, Dalian Polytechnic University, Dalian, 116034, China.
Abstract:
The strategic utilization of natural polysaccharides presents a critical approach for enhancing the gelation properties of soy protein isolate (SPI), which is a key factor in developing superior plant-based food textures. This study demonstrates a strategic technique to enhance SPI gel properties via preheating treatment and electrostatic complexation with chitosan oligosaccharide (COS). Structural analyses revealed that preheating and electrostatic complexation induced SPI unfolding, facilitating conformational transitions toward β-sheet (increased from 53.00 % to 65.35 %) and β-turn (increased from 5.10 % to 7.60 %) configurations while exposing buried tryptophan residues. Fourier-transform infrared spectroscopy, surface hydrophobicity, measurement of interaction force, and molecular docking confirmed that SPI-COS complexation was driven by synergistic electrostatic attractions, hydrogen bonds, van der Waals forces, and hydrophobic interactions. Increasing COS concentration (0-0.16 %, w/v) progressively enlarged complex particle size (100-350 nm) but reduced colloidal stability, as evidenced by turbidity, ζ-potential, and cryo-scanning electron microscopy. Critically, COS incorporation at 0.08-0.16 % (w/v) significantly elevated storage modulus (increased by 275 %) and viscosity while optimizing the regulation of bound and immobilized water in a concentration-dependent manner. These findings establish that COS-mediated electrostatic complexation restructures SPI networks into mechanically robust gels, providing a green strategy for next-generation plant-based foods.
Related Concept Videos
Complexation Equilibria: The Chelate Effect
Bioavailability Enhancement: Drug Stability Enhancement and GI Retention

