Jiangxi Key Laboratory of Natural Products and Functional Food, Jiangxi Agricultural University, Nanchang, China.
Agricultural Products Processing and Quality Control Engineering Laboratory of Jiangxi, Jiangxi Agricultural University, Nanchang, China.
Crit Rev Food Sci Nutr. 2024;64(3):617-637. doi: 10.1080/10408398.2022.2107612. Epub 2022 Aug 5.
Some bioactive substances in food have problems such as poor solubility, unstable chemical properties and low bioavailability, which limits their application in functional food. Recently, many egg white protein-based delivery carriers have been developed to improve the chemical stability, biological activity and bioavailability of bioactive substances. This article reviewed the structure and properties of several major egg white proteins commonly used to construct bioactive substance delivery systems. Several common carrier types based on egg white proteins, including hydrogels, emulsions, micro/nanoparticles, aerogels and electrospinning were then introduced. The biological functions of common bioactive substances, the limitations, and the role of egg white protein-based delivery systems were also discussed. At present, whole egg white protein, ovalbumin and lysozyme are most widely used in delivery systems, while ovotransferrin, ovomucoid and ovomucin are less developed and applied. Egg white protein-based nanoparticles are currently the most commonly used delivery carriers. Egg white protein-based hydrogels, emulsions, and microparticles are also widely used. Future research on the application of various egg white proteins in developed new delivery systems will provide more choices for the delivery of various bioactive substances.
一些食物中的生物活性物质存在溶解度差、化学性质不稳定、生物利用度低等问题,限制了其在功能性食品中的应用。近年来,许多以蛋清蛋白为基础的输送载体被开发出来,以提高生物活性物质的化学稳定性、生物活性和生物利用度。本文综述了几种常用的构建生物活性物质输送系统的主要蛋清蛋白的结构和性质。然后介绍了几种常见的基于蛋清蛋白的载体类型,包括水凝胶、乳液、微/纳米颗粒、气凝胶和静电纺丝。还讨论了常见生物活性物质的生物学功能、局限性以及蛋清蛋白基输送系统的作用。目前,全蛋清蛋白、卵清白蛋白和溶菌酶在输送系统中应用最广泛,而卵转铁蛋白、卵类黏蛋白和卵黏蛋白的开发和应用较少。基于蛋清蛋白的纳米颗粒是目前最常用的输送载体。基于蛋清蛋白的水凝胶、乳液和微球也被广泛应用。未来对各种蛋清蛋白在开发新型输送系统中的应用的研究,将为各种生物活性物质的输送提供更多选择。