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Updated: May 11, 2026

Combinatorial Synthesis of and High-throughput Protein Release from Polymer Film and Nanoparticle Libraries
Published on: September 6, 2012
Design and characterization of controlled-release edible packaging films prepared with synergistic whey-protein
Fei Liu1, Yanfeng Jiang, Bingjian Du
1CAU & ACC Joint Laboratory of Space Food; Key Laboratory of Functional Dairy Science of Beijing and Ministry of Education; College of Food Science & Nutritional Engineering; The National Dairy Industry Technology System-Beijing Innovation Team (NDITS-BIT); Beijing Higher Institution Engineering Research Center of Animal Product; China Agricultural University ; No.17 Qinghua East Road, Haidian, Beijing 100083, China.
Abstract:
This paper describes an investigation into the properties of a doubly emulsified film incorporated with protein-polysaccharide microcapsules, which serves as a multifunctional food packaging film prepared using common edible materials in place of petroleum--based plastics. The relationships between the microstructural properties and controlled release features of a series of water-in-oil-in-water (W/O/W) microcapsulated edible films prepared in thermodynamically incompatible conditions were analyzed. The hydrophilic riboflavin (V(B2)) nano-droplets (13-50 nm) dispersed in α-tocopherol (V(E)) oil phase were embedded in whey protein-polysaccharide (WPs) microcapsules with a shell thickness of 20-56 nm. These microcapsules were then integrated in 103 μm thick WPs films. Different polysaccharides, including gum arabic (GA), low-methoxyl pectin (LMP), and κ-carrageenan (KCG), exhibited different in vitro synergistic effects on the ability of both films to effect enteric controlled release of both vitamins. GA, which showed a strong emulsifying ability, also showed better control of V(E) than other polysaccharides, and the highly charged KCG showed better control of V(B2) than GA did.
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