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多酚-淀粉样纤维超分子稳定的高内相比乳液用于叶黄素的包封和保护。

High Internal Phase Emulsions Stabilized with Polyphenol-Amyloid Fibril Supramolecules for Encapsulation and Protection of Lutein.

机构信息

College of Food Science and Technology, Nanjing Agricultural University, 1 Weigang, Nanjing, Jiangsu 210095, P. R. China.

出版信息

J Agric Food Chem. 2022 Feb 23;70(7):2328-2338. doi: 10.1021/acs.jafc.1c04615. Epub 2022 Feb 8.

Abstract

High internal phase emulsions (HIPEs), also called highly concentrated emulsions with a minimal internal phase volume fraction of 74%, have been paid increasing attention in the development of functional foods due to their high potential in loading with large amounts of hydrophobic nutriceuticals. In the present study, HIPEs stabilized by polyphenol-amyloid supramolecular filaments were prepared for encapsulation of olive oil and loading with lutein. Binding and stacking of the green tea polyphenol epigallocatechin gallate (EGCG) on the surface of amyloid fibrils fabricated from hen egg lysozyme resulted in the hybrid supramolecules, which assembled to form hydrogels. The amyloid fibril clusters shrouded by EGCG were observed in the microstructure of the hydrogels characterized by atomic force microscopy (AFM). HIPEs stabilized by the EGCG-amyloid fibril supramolecules showed the typical microstructure of highly packed polyhedral geometric oil droplets. The gel strength of the HIPEs stabilized by the hybrid supramolecules was greater than that of HIPEs stabilized by pure amyloid fibrils. The droplet size of the HIPEs first decreased and then increased with the increase of EGCG contents in the hybrid supramolecules, which was consistent with the corresponding emulsion morphologies obtained from the images of confocal laser scanning microscopy (CLSM). Aggregation of the protein-based nanofibrils appeared in the continuous phase at higher EGCG contents. The droplet size of the HIPEs decreased with the increase of the amyloid fibril concentration, accompanied by more packed and homogenously dispersed lipid droplets, as shown in the CLSM images. A high loading content of lutein of up to 10 mg/mL in the prepared HIPEs was realized, and the stability of lutein against ultraviolet irradiation, heat, iron, and hydrogen peroxide was promoted significantly. In addition, encapsulation with the HIPEs prevented the oxidization of olive oil, and this effect was enhanced with the increase of the EGCG content in the hybrid supramolecules ranging from 0 to 0.25 wt %. The protection function of the HIPEs might be ascribed to the membrane of interfacial amyloid fibrils and the crowded oil droplet environment, both of which could shield the pro-oxidation factors.

摘要

高内相比乳液(HIPEs),也称为高浓度乳液,其内部相体积分数最小为 74%,由于其在负载大量疏水性营养物方面的巨大潜力,在功能性食品的开发中受到越来越多的关注。在本研究中,制备了由多酚-淀粉样纤维超分子稳定的 HIPEs 来包封橄榄油并负载叶黄素。绿茶多酚表没食子儿茶素没食子酸酯(EGCG)在来自蛋清溶菌酶的淀粉样纤维上的结合和堆积导致了混合超分子的形成,这些超分子组装形成水凝胶。原子力显微镜(AFM)表征的水凝胶的微观结构中观察到被 EGCG 包裹的淀粉样纤维簇。由 EGCG-淀粉样纤维超分子稳定的 HIPEs 表现出高度堆积的多面几何油滴的典型微观结构。由混合超分子稳定的 HIPEs 的凝胶强度大于由纯淀粉样纤维稳定的 HIPEs。随着混合超分子中 EGCG 含量的增加,HIPEs 的液滴尺寸先减小后增大,这与共聚焦激光扫描显微镜(CLSM)获得的相应乳液形态一致。在较高的 EGCG 含量下,蛋白质纳米纤维的聚集出现在连续相中。随着淀粉样纤维浓度的增加,HIPEs 的液滴尺寸减小,同时脂质液滴更加紧密和均匀地分散,这在 CLSM 图像中可以看出。在制备的 HIPEs 中实现了高达 10mg/mL 的叶黄素的高负载含量,并且显著促进了叶黄素对紫外线照射、热、铁和过氧化氢的稳定性。此外,用 HIPEs 包封可以防止橄榄油的氧化,并且随着混合超分子中 EGCG 含量从 0 增加到 0.25wt%,这种效果得到增强。HIPEs 的保护作用可能归因于界面淀粉样纤维的膜和拥挤的油滴环境,两者都可以屏蔽促氧化因素。

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