化学
大豆蛋白
流变学
食品科学
粘度
化学工程
口感
摩擦学
表观粘度
三元运算
没食子酸
动态力学分析
没食子酸表没食子酸酯
吸附
没食子酸
润滑
粘度指数
色谱法
发酵
木瓜蛋白酶
有机化学
风味
作者
Imane Bourouis,Mengya Sun,Tianyu Zhang,He Li,Zhihua Pang,Xinqi Liu
标识
DOI:10.1111/1750-3841.70928
摘要
This work explores how soy protein isolate-chitosan-epigallocatechin gallate (SPI-CS-EGCG) ternary complexes influence the structural and functional characteristics of soy yogurt. The study particularly focuses on how these complexes interact with soy milk proteins during acid-induced gelation and how they modify the final gel matrix. The addition of SPI-CS-EGCG microgels significantly enhanced the nutritional composition of soy yogurt, increasing protein content from 3.83% to 5.22% (p < 0.05) and total phenolic content from 0.06 to 0.09 mg gallic acid equivalents per gram (p < 0.05), while significantly reducing fat content from 2.16% to 1.90% (p < 0.05). In terms of functionality, the fortified yogurts exhibited stronger textural properties, such as greater firmness, elasticity, and viscosity, as well as improved water-holding capacity. Rheological testing revealed higher apparent viscosity and shear modulus values in the fortified samples. The SPI-CS-EGCG complexes also promoted earlier aggregation of soy proteins during fermentation, initiating gelation at a higher pH (6.14) compared to the control (pH 5.61). Moreover, the modified yogurts exhibited significantly improved lubrication performance, as indicated by lower friction coefficients across the sliding speed range, particularly at speeds above 6000 µm/s compared with the control (p < 0.05), suggesting improved mouthfeel characteristics. Overall, the integration of SPI-CS-EGCG complexes effectively improved both the nutritional and structural properties of soy yogurt, offering a promising strategy for developing high-quality plant-based fermented products.
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