School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China.
College of Animal Science and Technology, Nanjing Agricultural University, Nanjing 210095, China.
Int J Biol Macromol. 2023 Oct 1;250:126006. doi: 10.1016/j.ijbiomac.2023.126006. Epub 2023 Jul 29.
Tea polyphenols (TP) and plant proteins are significant materials in the food industry, the interactions between them are beneficial for their stability, functional properties, and biological activity. In this study, the mechanism and interaction between Dolichos lablab L. protein (DLP) obtained from nine treatments and three tea polyphenol monomers (EGCG, ECG, and EGC) were investigated. The results showed that the fluorescence of DLP was noticeably quenched and exhibited static quenching after the addition of polyphenols. DLP exhibited 1-2 binding sites for EGCG and ECG, but weakly binding to EGC (<1). The binding sites of DLP-TP were found to be in close proximity to the tyrosine residues, primarily interacting through hydrophobic interactions, van der Waals forces, and hydrogen bonds. The antioxidant capacity of DLP-TP compound was significantly improved after digestion. ECG showed a strong resistance to intestinal digestion. Compared with ECG (653.456 μg/mL), the content of free tea polyphenols of 20/40 kHz-ECG after digestion was 732.42 μg/mL. DLP-TP complexes significantly improved the storage stability, thermal stability, and bioaccessibility of tea polyphenols. The interaction between TP and DLP, as a protein-polyphenol complex, has great potential for application in preparing emulsion delivery systems due to their antioxidant activity and improved stability.
茶多酚(TP)和植物蛋白是食品工业中的重要物质,它们之间的相互作用有利于它们的稳定性、功能特性和生物活性。在本研究中,研究了从九种处理方法中获得的菜豆蛋白(DLP)与三种茶多酚单体(EGCG、ECG 和 EGC)之间的相互作用机制。结果表明,多酚的加入明显猝灭了 DLP 的荧光,并呈现静态猝灭。DLP 对 EGCG 和 ECG 具有 1-2 个结合位点,但对 EGC 的结合能力较弱(<1)。发现 DLP-TP 的结合部位靠近色氨酸残基,主要通过疏水相互作用、范德华力和氢键相互作用。消化后,DLP-TP 化合物的抗氧化能力显著提高。ECG 对肠道消化有很强的抵抗力。与 ECG(653.456μg/mL)相比,20/40 kHz-ECG 消化后的游离茶多酚含量为 732.42μg/mL。DLP-TP 复合物显著提高了茶多酚的储存稳定性、热稳定性和生物利用度。由于具有抗氧化活性和提高的稳定性,TP 和 DLP 之间的相互作用作为一种蛋白质-多酚复合物,在制备乳液递送系统方面具有很大的应用潜力。