College of Food Science and Engineering, Northwest A&F University, Yangling, China.
College of Food Science and Engineering, Ocean University of China, Qingdao, China.
Crit Rev Food Sci Nutr. 2020;60(12):2083-2097. doi: 10.1080/10408398.2019.1630358. Epub 2019 Jul 1.
When consumed at sufficiently high levels, polyphenols may provide health benefits, which is linked to their antidiabetic, antiinflamatory, antimicrobial, antioxidant, antitumor, and hypolipidemic properties. Moreover, certain polyphenol combinations exhibit synergistic effects when delivered together - the combined polyphenols have a higher biological activity than the sum of the individual ones. However, the commercial application of polyphenols as nutraceuticals is currently limited because of their poor solubility characteristics; instability when exposed to light, heat, and alkaline conditions; and, low and inconsistent oral bioavailability. Colloidal delivery systems are being developed to overcome these challenges. In this article, we review the design, fabrication, and utilization of food-grade biopolymer-based delivery systems for the encapsulation of one or more polyphenols. In particular, we focus on the creation of delivery systems constructed from edible proteins and polysaccharides. The optimization of biopolymer-based delivery systems may lead to the development of innovative polyphenol-enriched functional foods that can improve human health and wellbeing.
当多酚的摄入量达到足够高的水平时,可能会带来健康益处,这与其抗糖尿病、抗炎、抗菌、抗氧化、抗肿瘤和降血脂特性有关。此外,某些多酚组合在共同给药时表现出协同作用——组合多酚的生物活性高于单个多酚的总和。然而,多酚作为营养保健品的商业应用目前受到限制,因为它们的溶解度特性差;在暴露于光、热和碱性条件下不稳定;以及口服生物利用度低且不一致。胶体递送系统正在被开发以克服这些挑战。在本文中,我们综述了设计、制备和利用基于食品级生物聚合物的递送系统来封装一种或多种多酚的方法。特别地,我们专注于由可食用蛋白质和多糖构建的递送系统的创建。基于生物聚合物的递送系统的优化可能会导致开发出创新的富含多酚的功能性食品,从而改善人类健康和幸福感。