Abstract
Food proteins have been widely used as carrier materials for the encapsulation and protection of bioactive molecules. Clarification of the mechanism of protein-bioactive molecule interaction is important for the development of protein-based carrier systems. The interaction of β-casein with resveratrol, a natural polyphenol, was studied using ultraviolet-visible absorption and fluorescence spectroscopy. It was found that the interaction shifted the protein fluorophores to a more hydrophilic environment and the polyphenol to a more hydrophobic environment. The formation of the complex with β-casein did not affect trans-cis isomerization of resveratrol or the total antioxidant activity of the protein-polyphenol system, as analyzed respectively using spectrophotometry and the 2,2′-azinobis(3-ethylbenzothiazoline-6-sulfonic acid) assay. The protective effect of resveratrol against photodecomposition of folic acid was not affected by binding to β-casein. The data obtained should provide insight into protein-polyphenol interaction mechanisms and aid the development of β-casein-based carrier systems for the delivery of bioactive molecules.
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Cheng, H., Li, Y., Yin, X., Subirade, M., & Liang, L. (2016). The β-casein-resveratrol complex: Physicochemical characteristics and implications for enhanced nutrition. Journal of the Serbian Chemical Society, 81(7), 739–750. https://doi.org/10.2298/JSC151029025C
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