State Key Laboratory of Marine Food Processing and Safety Control, College of Food Science and Engineering, Ocean University of China, Qingdao, P.R. China; Qingdao Key Laboratory of Food Biotechnology, Qingdao, P.R. China; Key Laboratory of Biological Processing of Aquatic Products, China National Light Industry, Qingdao, P.R. China.
State Key Laboratory of Marine Food Processing and Safety Control, College of Food Science and Engineering, Ocean University of China, Qingdao, P.R. China; Qingdao Key Laboratory of Food Biotechnology, Qingdao, P.R. China; Key Laboratory of Biological Processing of Aquatic Products, China National Light Industry, Qingdao, P.R. China; Laboratory for Marine Drugs and Bioproducts, Qingdao National Laboratory for Marine Science and Technology, Qingdao, P.R. China.
Adv Food Nutr Res. 2024;112:257-300. doi: 10.1016/bs.afnr.2024.06.010. Epub 2024 Jul 2.
Natural bioactive compounds with antioxidant, antimicrobial, anticancer, and other biological activities are vital for maintaining the body's physiological functions and enhancing immunity. These compounds have great potential as nutritional therapeutic agents, but they can be limited due to their poor flavor, color, unstable nature, and poor water solubility, and degradation by gastrointestinal enzymes. Liposomes, as ideal carriers, can encapsulate both water-soluble and fat-soluble nutrients, enhance the bioavailability of functional substances, promote the biological activity of functional substances, and control the release of nutrients. Despite their potential, liposomes still face obstacles in nutrient delivery. Therefore, the design of liposomes for special needs, optimization of the liposome preparation process, enhancement of liposome encapsulation efficiency, and industrial production are key issues that must be addressed in order to develop food-grade liposomes. Moreover, the research on surface-targeted modification and surface functionalization of liposomes is valuable for expanding the scope of application of liposomes and achieving the release of functional substances from liposomes at the appropriate time and site. The establishment of in vivo and in vitro digestion models of nutrient-loaded liposomes, in-depth study of gastrointestinal digestive behavior after liposome ingestion, targeted nutrient release, and deciphering the nutritional intervention of human diseases and positive health promotion are promising fields with broad development prospects.
具有抗氧化、抗菌、抗癌和其他生物活性的天然生物活性化合物对于维持身体的生理功能和增强免疫力至关重要。这些化合物作为营养治疗剂具有巨大的潜力,但由于其不良的味道、颜色、不稳定性和较差的水溶性以及胃肠道酶的降解,其应用受到限制。脂质体作为理想的载体,可以包裹水溶性和脂溶性营养素,提高功能性物质的生物利用度,促进功能性物质的生物活性,并控制营养素的释放。尽管具有潜力,但脂质体在营养物质输送方面仍然面临障碍。因此,设计用于特殊需求的脂质体、优化脂质体制备工艺、提高脂质体包封效率和实现工业生产是开发食品级脂质体必须解决的关键问题。此外,脂质体的表面靶向修饰和表面功能化的研究对于扩大脂质体的应用范围和实现功能性物质在适当的时间和部位从脂质体中释放具有重要价值。建立负载营养素的脂质体在体和离体消化模型,深入研究脂质体摄入后的胃肠道消化行为、靶向性释放营养素以及破解人类疾病的营养干预和积极健康促进,是具有广阔发展前景的有前途的领域。