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◆ Foods (Basel, Switzerland)2026-08-17

Temperature-Mediated Structure-Functionality Changes in Soybean Meal Protein via Extrusion.

Rong Ma, Xiqin Pan, Yuhan Zhuang, Yifei Han, Shanshan Li, Zhengfeng Fang, Mingquan Xia, Liang Hu, Hong Chen

原始摘要(英文原文)· Original abstract
Soybean meal protein, a byproduct of soybean processing, has limited functional properties such as emulsifying performance, which restricts its application in foods. Given that high-temperature extrusion tends to cause excessive denaturation and irreversible aggregation, this study aimed to investigate the effects of relatively low extrusion temperatures (85-105 °C) on the structural and functional properties of soybean meal protein. The results showed that extrusion altered the molecular structure and functional characteristics of the protein. With increasing extrusion temperature, the β-sheet content increased while the α-helix content decreased in the secondary structure, and tertiary structural rearrangements occurred, with hydrophobic groups being exposed and subsequently buried. At 95 °C, the protein formed a relatively porous and loose microstructure and exhibited the strongest surface hydrophobicity, water-holding capacity, oil-holding capacity, and emulsifying properties; at 100 °C and above, excessive aggregation occurred, pore structure collapsed, and functional properties declined. Meanwhile, extrusion generally reduced protein solubility. Therefore, 95 °C is identified as the optimal extrusion temperature under the conditions of this study. In addition, this study reveals the correlation between structural reconstruction and functional changes of soybean meal protein, providing a theoretical basis for its high-value utilization and application in the food industry.
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Temperature-Mediated Structure-Functionality Changes in Soybean Meal Protein via Extrusion. — 科研速览 Science Skim