Study of soybean protein isolate-tannic acid non-covalent complexes by multi-spectroscopic analysis, molecular docking, and interfacial adsorption kinetics
Author:
Funder
Ministry of Science and Technology of the People's Republic of China
Publisher
Elsevier BV
Subject
General Chemical Engineering,General Chemistry,Food Science
Reference50 articles.
1. Tannic acid incorporation in chitosan-based microparticles and in vitro controlled release;Aelenei;Journal of Materials Science: Materials in Medicine,2009
2. Characterization of soybean protein isolate-food polyphenol interaction via virtual screening and experimental studies;Ao;Foods,2021
3. Recent innovations in emulsion science and technology for food applications;Bai;Journal of Agricultural and Food Chemistry,2021
4. Interaction of whey proteins with phenolic derivatives under neutral and acidic pH conditions;Cao;Journal of Food Science,2017
5. Interfacial properties of whey protein foams as influenced by preheating and phenolic binding at neutral pH;Cao;Food Hydrocolloids,2018
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