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Ultrasound-assisted ethanol induced gelation of egg white: Effects on gel properties, water distribution and microstructure

作者:Lan Liu, Xin Li, Pei Zhang, Wenjie Yan, Yingmei Wu, Hongbo Song, Fengping An, Peng Luo, Guofeng Jin, Qun Huang · 发表于:Ultrasonics Sonochemistry · 年份:2025 · DOI:10.1016/j.ultsonch.2025.107482 · 被引用次数:8 · 研究领域:Proteins in Food Systems、Microencapsulation and Drying Processes、Polysaccharides Composition and Applications

This study explored the mechanism by which ultrasound (0-180 W) assisted ethanol (25 % and 30 %) enhances the gel properties of egg white gel (EWG). The results showed that ultrasonic treatment (stabilized at 120 W) prominently improved hardness, springiness and water holding capacity (WHC) (approximately 2 times, 1.5 times and 1.3 times higher than those of control group). Notably, the gel properties of EWG30% group consistently outperformed those of EWG25% group. The results of physicochemical properties revealed that ultrasound-assisted ethanol treatment promoted the aggregation of soluble particles (the particle sizes was 3.10 and 1.69 times larger than that in EWG25% and EWG30%; while the solubility was increased by 29.69 % and 66.19 %, respectively). Disulfide bonds were identified as the predominant intermolecular force in the gels, accounting for over 70 %, while hydrogen bond content increased approximately 2.5-fold following treatment. The free water in EWGs exhibited a shift toward immobile water. SDS-PAGE analysis illustrated that lysozyme and ovomucoid participated in the aggregation process. Regarding gel structure, the β-sheet increased by 2.66 % and 15.48 % at ethanol concentrations of 25 % and 30 %, respectively, accompanied by a reduction in fluorescence intensity, further confirming ultrasound-assisted ethanol induced aggregation of egg white protein (EWP). Meanwhile, the gel microstructure became more compact, forming a highly ordered network directly corr...