食品科学 ›› 2026, Vol. 47 ›› Issue (17): 389-398.doi: 10.7506/spkx1002-6630-20260122-187

• 专题论述 • 上一篇    下一篇

扇贝性腺蛋白分离物和水解物的结构特性、理化功能和在食品递送体系中的应用研究进展

曾祥权,刘思嵘,刘梦萱,李英燕,赵美婷,米家昕,李海航,奚宇,王彦波,李健   

  1. (北京工商大学食品与健康学院,国家市场监督管理总局技术创新中心(动物替代蛋白),教育部老年营养与健康重点实验室,中国轻工业植物基食品绿色低碳加工技术重点实验室,北京 100048)
  • 出版日期:2026-09-15 发布日期:2026-09-03
  • 基金资助:
    农业科技重大项目

Research Progress on the Structural Characteristics, Physicochemical Properties and Applications in Food Delivery Systems of Scallop (Patinopecten yessoensis) Gonad Protein Isolates and Hydrolysates

ZENG Xiangquan, LIU Sirong, LIU Mengxuan, LI Yingyan, ZHAO Meiting, MI Jiaxin, LI Haihang, XI Yu, WANG Yanbo, LI Jian   

  1. (Key Laboratory of Green and Low-carbon Processing Technology for Plant-based Food of China National Light Industry Council, Key Laboratory of Geriatric Nutrition and Health, Ministry of Education, National Market Supervision Administration Innovation Center (Animal Substituted Protein), School of Food and Health, Beijing Technology and Business University, Beijing 100048, China)
  • Online:2026-09-15 Published:2026-09-03

摘要: 扇贝性腺作为扇贝加工过程的主要副产物,因其高蛋白含量近年来受到广泛关注。扇贝性腺蛋白分离物(scallop gonad protein isolates,SGPIs)和水解物(scallop gonad hydrolysates,SGHs)被证明具有优良的理化及功能特性,可被用于新型食品递送体系的构建。本文系统总结SGPIs和SGHs的结构特性、理化性质及二者在食品递送体系中的应用研究进展。研究表明,SGPIs含有全部必需氨基酸,而SGHs与其具有较高相似性。不同物理(如等电溶解/沉淀、超声)和化学(如多酚、多糖)处理可显著改善SGPIs和SGHs的溶解性、表面疏水性、凝胶性、持水/持油性、乳化性、发泡性、消化性及抗氧化性等关键理化功能性质。得益于两者良好的界面及生物活性,SGPIs与SGHs被应用于食品递送体系(如复合凝胶、乳液及共价复合物)的构建以提升功能成分(如多酚和类胡萝卜素)的稳定性与生物利用度。共价和非共价相互作用(如静电相互作用、氢键、疏水相互作用等)在递送体系制备及功能物质包埋中扮演重要角色。综上,SGPIs及SGHs作为新型壁材在食品、制药及其他行业中具有广阔应用前景。

关键词: 扇贝性腺蛋白分离物;扇贝性腺水解物;化学结构;理化性质;食品递送体系

Abstract: Scallop gonads, a major by-product of scallop processing, have attracted considerable attention in recent years due to their high protein content. Scallop gonad protein isolates (SGPIs) and hydrolysates (SGHs)​ have been proven to possess excellent physicochemical and functional properties and can be used in constructing novel food delivery systems. This article systematically summarizes the structural characteristics and physicochemical properties of SGPIs and SGHs and reviews recent advances in the application of SGPIs and SGHs in food delivery systems. Research indicates that SGPIs contain all essential amino acids, and SGHs exhibit high similarity to SGPIs. Various physical treatments (e.g., isoelectric solubilization/precipitation, and ultrasound) and chemical treatments (e.g., polyphenols and polysaccharides) can significantly improve key functional properties of SGPIs and SGHs, including solubility, surface hydrophobicity, gelation properties, water/oil-holding capacities, emulsifying ability, foaming capacity, digestibility, and antioxidant activity. Due to their favorable interfacial and bioactive properties, SGPIs and SGHs have been applied in the development of food delivery systems such as composite gels, emulsions, and covalent complexes to enhance the stability and bioavailability of functional components (e.g., polyphenols and carotenoids). Covalent and non-covalent interactions (e.g., electrostatic interactions, hydrogen bonding, and hydrophobic interactions) play crucial roles in the formation of delivery systems and the encapsulation of functional substances. In summary, SGPIs and SGHs hold great promise as novel wall materials with broad applications in the food, pharmaceutical, and other industries.

Key words: scallop gonad protein isolates; scallop gonad hydrolysates; chemical structure; physicochemical properties; food delivery systems

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