Emulsifying properties of soy proteins: A critical review with emphasis on the role of conformational flexibility

Эмульгирующие свойства соевых белков: критический обзор с акцентом на роль конформационной гибкости
Chuan‐He Tang
2015-10-13

Pickering emulsion stabilizationconformational flexibilityemulsifying propertiesinterfacial propertiessoy proteins
Soy proteins as important food ingredients exhibit a great potential to be widely applied in food formulations, due to their good nutrition, functional properties and health effects. The knowledge about the structure-function relationships of these proteins is crucial for their applications, but still very scant, especially that on their molecular mechanism of emulsification. The purpose of this review is to present a comprehensive summary of the knowledge about emulsifying and interfacial properties of soy proteins, achieved during the past decades, and particularly to provide an insight in understanding the role of conformational flexibility in their emulsifying properties. The interplays between the emulsifying and interfacial properties are also elucidated. For these proteins, the conformational flexibility rather than the surface hydrophobicity is the crucial parameter determining their emulsification performance. On the other hand, evidence is fast growing to indicate that because of the insoluble nature, soy proteins are a kind of unique materials to perform as food-grade Pickering stabilizers. The knowledge about the Pickering emulsion stabilization is distinctly different from that for conventional emulsions stabilized by soy proteins. Thus, different strategies should be employed to develop soy proteins into a kind of effective emulsifiers, depending on the preference of emulsification performance or emulsion stability.
1
Because of their insoluble nature, soy proteins can function as distinctive food-grade Pickering stabilizers.
2
Conformational flexibility, rather than surface hydrophobicity, is identified as the crucial parameter governing soy-protein emulsification performance.
3
Developing soy proteins for effective emulsification requires different strategies depending on whether emulsification performance or emulsion stability is prioritized.
4
Soy proteins’ emulsifying and interfacial properties are interconnected, but their governing mechanisms differ from those of conventional emulsifiers.
5
The review synthesizes decades of research on soy-protein emulsifying and interfacial properties, emphasizing structure–function relationships.

Soy proteins in food emulsions and Pickering emulsions

Emulsifying and interfacial properties, molecular emulsification mechanisms, and the role of conformational flexibility in emulsification performance and emulsion stabilization

Publication Details
Publication Date
2015-10-13
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Chuan‐He Tang
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%