Skip to content

Multi-scale structure and rheological properties of acid-induced soy protein and β-lactoglobulin gel to develop plant-based milk alternatives.

Sep 2026 · Food Chemistry · Vol 528, pp. 151104 · 0 citations · 42 references
Medicine

Abstract

Soy protein isolate (SPI) and β-lactoglobulin (β-Lg) were selected with varied mixing ratios and heating strategies to explore acid-induced gelation in achieving novel textures. SPI/β-Lg ratio exerted a more pronounced effect on acid-induced gel than heating strategies. With the increase of SPI/β-Lg ratio, the stiffness and elasticity of co-gels generally increased (γc: 2.51-3.93%), accompanied by increased protein aggregates and higher interfacial protein adsorption. SPI could effectively substitute 50% of β-Lg without compromising gel properties. Compared with co-protein gels, co-protein emulsion gels exhibited 9.26-28.06% lower hardness and reduced storage modulus (G'), but showed 1.03-17.24% higher water-holding capacity (WHC), as confirmed by CLSM and SEM observations. Moreover, mix-then-heat gels outperformed heat-then-mix gels, with hardness and WHC increasing by 9.78-37.37% and 1.42-3.61%, respectively. And G' values of mix-then-heat emulsion gels showed about 5.41-43.61% elevation over their heat-then-mix counterparts. The results highlight SPI as an alternative protein to develop gelled food with diverse textures.

View source

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.