College of Food Science and Engineering, Yangzhou University, Yangzhou 225127, China.
Yangzhou Center for Food and Drug Control, Yangzhou 225127, China.
Food Funct. 2022 May 23;13(10):5498-5514. doi: 10.1039/d1fo03386g.
Selenium (Se) deficiency can cause many diseases and thereby affect human health. Traditional inorganic Se supplements have disadvantages of toxicity and low bioavailability. Se-Enriched proteins exhibit good bio-accessibility and high biological activities. This review provides a comprehensive overview of the preparation, purification, identification, bioavailability, bioactivities and application of Se-enriched proteins. The method of extracting Se-enriched proteins from animals, microorganisms and plants mainly includes solvent extraction (water, salt, ethanol and alkali solution extraction) and novel extraction technologies (ultrasound-assisted and pulsed electric field assisted extraction). Se-Enriched proteins and their hydrolysates exhibit good bioactivities, mainly including antioxidant activity, immune regulation, neuroprotective activity, and inhibition of hyperglycemic activity, among others. Future research should focus on the relationship between Se-enriched protein metabolism and the selenium regulatory protein metabolic pathway by using multi-omics technology. In addition, it is necessary to comprehensively study the structure-activity relationship of Se-enriched proteins/hydrolysates from different sources, to further clarify their bioactive mechanism and to verify their health benefits .
硒(Se)缺乏会导致许多疾病,从而影响人类健康。传统的无机硒补充剂具有毒性和生物利用度低的缺点。富硒蛋白具有良好的生物可及性和高生物活性。本文综述了富硒蛋白的制备、纯化、鉴定、生物利用度、生物活性和应用。从动物、微生物和植物中提取富硒蛋白的方法主要包括溶剂提取(水、盐、乙醇和碱溶液提取)和新型提取技术(超声辅助和脉冲电场辅助提取)。富硒蛋白及其水解产物具有良好的生物活性,主要包括抗氧化活性、免疫调节、神经保护活性和抑制高血糖活性等。未来的研究应重点利用多组学技术研究富硒蛋白代谢与硒调节蛋白代谢途径的关系。此外,有必要综合研究不同来源的富硒蛋白/水解产物的结构-活性关系,进一步阐明其生物活性机制,并验证其健康益处。