Related Experiment Video
Updated: Jun 12, 2026

Mammalian Cell Encapsulation in Alginate Beads Using a Simple Stirred Vessel
Published on: June 29, 2017
W/O/W emulsion-filled egg white gel co-stabilized by protein and γ-cyclodextrin MOFs with multi-chamber encapsulation
Chan Li1, Xue Yang1, Yunfei Zou1
1Guizhou Key Laboratory of New Quality Processing and Storage of Ecological Specialty Food, School of Liquor and Food Engineering, Guizhou University, Guiyang 550025, PR China.
Abstract:
Egg white gel (EWG) is a highly important raw and auxiliary material in food industry. With the increasing demand of consumers for nutrition, developing a modification method for regulating the texture of traditional egg white gel while enhancing its nutritional efficacy has become a challenge. Herein, a hierarchical W/O/W double emulsion filled gel was fabricated via a two-level emulsification process. The primary W/O emulsion, stabilized by synthesized γ-cyclodextrin metal-organic frameworks (CD-MOFs) Pickering emulsifiers, was incorporated into an egg white solution, where the endogenous emulsifying properties of the proteins facilitated the formation of the secondary O/W interface. The stability and morphology of the CD-MOFs-stabilized W/O emulsion (CDME) were analyzed, and the gel properties, molecular interactions, and microstructure of the W/O/W emulsion filled EWG gel (CDME-EWG) was then evaluated. The results indicated that CD-MOFs at 6 mg/mL (CDME-6) significantly enhanced the stability of the Pickering emulsion. This effect was achieved through the formation of a dense interfacial film at the oil/water boundary, which effectively promoted droplet dispersion and suppresses coalescence. Furthermore, the emulsion filled gel with 6 mg/mL CD-MOFs (CDME-EWG6) promoted the cross-linking within the gel network, leading to a more compact structure, enhanced water retention (52.84%) and hardness (887.00 g), as well as the enhancement in encapsulation capability (81.77%) and bioavailability (41.18%) of lutein. This study proposed a novel strategy for improving the performance of protein gels, which also provided the potential for co-encapsulation of multi-component bio-actives via the porous CD-MOFs and compartmentalized chamber within the W/O/W emulsion.

