食品科学 ›› 2026, Vol. 47 ›› Issue (17): 78-88.doi: 10.7506/spkx1002-6630-20260409-084

• 食品化学 • 上一篇    下一篇

用于VC和VE共包封的Wgel/O/W2多重乳液的开发与优化:稳定性及效率评价

赵超亚,张建红,吴映梅,李鑫,宋洪波,安凤平,黄群   

  1. (1.贵州医科大学公共卫生与健康学院,贵州省生态食品创制工程研究中心,贵州?贵阳 561113;2.福建农林大学食品科学学院,福建?福州 350002)
  • 出版日期:2026-09-15 发布日期:2026-09-03
  • 基金资助:
    贵州省科技创新领军人才项目(KJLYRC-[2026]040);贵州省科技厅创新人才团队项目(CXTD[2023]018); 贵州医科大学高层次人才启动基金项目(校博合J字[2024]055号)

Development and Optimization of Wgel/O/W2 Multiple Emulsions for the Co-encapsulation of Vitamins C and E: Stability and Efficiency Evaluation

ZHAO Chaoya, ZHANG Jianhong, WU Yingmei, LI Xin, SONG Hongbo, AN Fengping, HUANG Qun   

  1. (1. Guizhou Province Engineering Research Center of Health Food Innovative Manufacturing, School of Public Health, Guizhou Medical University, Guiyang 561113, China; 2. College of Food Science, Fujian Agriculture and Forestry University, Fuzhou 350002, China)
  • Online:2026-09-15 Published:2026-09-03

摘要: 本研究旨在通过内水相凝胶化与界面组分优化的协同策略,构建一种稳定的水凝胶-油-水型(Wgel/O/W2)多重乳液,用于实现亲水性维生素(VC)与亲脂性维生素(VE)的高效共包封。首先系统考察聚甘油聚蓖麻油醇酸酯(polyglycerol polyricinoleate,PGPR)添加量及水油质量比对初级W1/O乳液特性的影响;随后,利用麦芽糊精-乳清分离蛋白(maltodextrin and whey protein isolate,MD-WPI)复合物作为外相亲水乳化剂,成功构建W1/O/W2体系。结果表明,在最优参数(5% PGPR、水油质量比3∶7、20% MD-WPI、初级乳液占比2∶8)下,乳液呈现出高度均匀的粒径分布。值得注意的是,在内水相中添加2%明胶后,所制备的Wgel/O/W2乳液的液滴结构机械强度显著增强,有效抑制了内部液滴的聚结和溶胀,使VC和VE的包封率分别高达98.28%和93.29%。本研究不仅可为解决多重乳液的不稳定性提供有效策略,也可为极性差异化功能成分的高效共递送体系设计提供理论参考。

关键词: 多重乳液;明胶;共包封;VC;VE

Abstract: This study aimed to develop stable Wgel/O/W2 multiple emulsions for the high-efficiency co-encapsulation of the hydrophilic vitamin (VC) and lipophilic vitamin (VE) through a synergistic strategy of inner-phase gelation and interface component optimization. The effects of polyglycerol polyricinoleate (PGPR) concentration and water-to-oil ratio on the properties of the primary W1/O emulsion were systematically investigated. Subsequently, the W1/O/W2 emulsion was successfully constructed using a maltodextrin-whey protein isolate (MD-WPI) complex as the external hydrophilic emulsifier. Results indicated that under optimal conditions (5% PGPR, 3:7 water-to-oil ratio, 20% MD-WPI, and a 2:8 primary emulsion ratio), the emulsions exhibited a highly uniform particle size distribution. Notably, the incorporation of 2% gelatin into the inner aqueous phase significantly enhanced structural mechanical strength of droplets in the Wgel/O/W2 emulsion, effectively inhibiting the coalescence and swelling of internal droplets. This led to exceptionally high encapsulation efficiencies of 98.28% for VC and 93.29% for VE. This work not only provides an effective strategy for overcoming the instability of multiple emulsions but also offers valuable theoretical insights for the design of efficient co-delivery systems for functional ingredients with varying polarities.

Key words: multiple emulsion; gelatin; co-encapsulation; vitamin C; vitamin E

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