School of Food and Agricultural Sciences, University of Management and Technology, Lahore, Pakistan.
Department of Food Science, University of Massachusetts, Amherst, Massachusetts, USA.
Crit Rev Food Sci Nutr. 2023;63(16):2719-2737. doi: 10.1080/10408398.2021.1980370. Epub 2021 Sep 27.
Consumer awareness of the relationship between health and nutrition has caused a substantial increase in the demand for nutraceuticals and functional foods containing bioactive compounds (BACs) with potential health benefits. However, the direct incorporation of many BACs into commercial food and beverage products is challenging because of their poor matrix compatibility, chemical instability, low bioavailability, or adverse impact on food quality. Advanced encapsulation technologies are therefore being employed to overcome these problems. In this article, we focus on the utilization of plant and animal derived proteins to fabricate micro and nano-particles that can be used for the oral delivery of BACs such as omega-3 oils, vitamins and nutraceuticals. This review comprehensively discusses different methods being implemented for fabrications of protein-based delivery vehicles, types of proteins used, and their compatibility for the purpose. Finally, some of the challenges and limitations of different protein matrices for encapsulation of BACs are deliberated upon. Various approaches have been developed for the fabrication of protein-based microparticles and nanoparticles, including injection-gelation, controlled denaturation, and antisolvent precipitation methods. These methods can be used to construct particle-based delivery systems with different compositions, sizes, surface hydrophobicity, and electrical characteristics, thereby enabling them to be used in a wide range of applications.
消费者对健康和营养之间关系的认识,导致对含有具有潜在健康益处的生物活性化合物 (BAC) 的营养保健品和功能性食品的需求大幅增加。然而,由于许多 BAC 与基质的兼容性差、化学稳定性低、生物利用度低或对食品质量有不利影响,将其直接纳入商业食品和饮料产品具有挑战性。因此,先进的封装技术被用来克服这些问题。本文重点介绍了利用植物和动物来源的蛋白质来制备微纳米颗粒,这些颗粒可用于口服输送 BAC,如欧米伽-3 油、维生素和营养保健品。这篇综述全面讨论了用于制备蛋白质输送载体的不同方法、使用的蛋白质类型及其适用性。最后,还讨论了不同蛋白质基质在封装 BAC 方面的一些挑战和局限性。已经开发出各种用于制造基于蛋白质的微球和纳米颗粒的方法,包括注射凝胶化、控制变性和反溶剂沉淀方法。这些方法可用于构建具有不同组成、大小、表面疏水性和电特性的基于颗粒的输送系统,从而使其能够在广泛的应用中使用。