Acevedo-Fani Alejandra, Dave Anant, Singh Harjinder
Riddet Institute, Massey University, Palmerston North, New Zealand.
International Iberian Nanotechnology Laboratory, Braga, Portugal.
Front Chem. 2020 Sep 24;8:564021. doi: 10.3389/fchem.2020.564021. eCollection 2020.
Consumers are demanding more natural, healthy, and high-quality products. The addition of health-promoting substances, such as bioactive compounds, to foods can boost their therapeutic effect. However, the incorporation of bioactive substances into food products involves several technological challenges. They may have low solubility in water or poor stability in the food environment and/or during digestion, resulting in a loss of their therapeutic properties. Over recent years, the encapsulation of bioactive compounds into laboratory-engineered colloidal structures has been successful in overcoming some of these hurdles. However, several nature-assembled colloidal structures could be employed for this purpose and may offer many advantages over laboratory-engineered colloidal structures. For example, the casein micelles and milk fat globules from milk and the oil bodies from seeds were designed by nature to deliver biological material or for storage purposes. These biological functional properties make them good candidates for the encapsulation of bioactive compounds to aid in their addition into foods. This review discusses the structure and biological function of different nature-assembled carriers, preparation/isolation methods, some of the advantages and challenges in their use as bioactive compound delivery systems, and their behavior during digestion.
消费者对更天然、健康和高品质的产品需求不断增加。在食品中添加促进健康的物质,如生物活性化合物,可以增强其治疗效果。然而,将生物活性物质纳入食品产品涉及若干技术挑战。它们可能在水中溶解度低,或在食品环境和/或消化过程中稳定性差,导致其治疗特性丧失。近年来,将生物活性化合物封装到实验室设计的胶体结构中已成功克服了其中一些障碍。然而,几种天然组装的胶体结构可用于此目的,并且可能比实验室设计的胶体结构具有许多优势。例如,牛奶中的酪蛋白胶粒和乳脂肪球以及种子中的油体是自然界设计用来递送生物材料或用于储存目的的。这些生物学功能特性使它们成为封装生物活性化合物以帮助将其添加到食品中的良好候选者。本综述讨论了不同天然组装载体的结构和生物学功能、制备/分离方法、作为生物活性化合物递送系统使用时的一些优点和挑战,以及它们在消化过程中的行为。