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Updated: Aug 8, 2026

Cellular Affinity of Particle-Stabilized Emulsion to Boost Antigen Internalization
Published on: September 2, 2022
PSE-like chicken protein isolate/carboxymethyl chitosan particles for curcumin-loaded Pickering emulsions:
Chenyan Zhu1, Dianbo Zhao1, Mengge Li1
1College of Food and Bioengineering, Key Laboratory of Cold Chain Food Processing and Safety Control, Ministry of Education, Zhengzhou University of Light Industry, Ke Xue Road No. 136, Zhengzhou 450001, PR China.
Abstract:
This study aimed to systematically investigate the interfacial stabilization behavior of pale, soft, and exudative-like (PSE-like) chicken protein in Pickering emulsions and to assess its potential as an effective curcumin delivery vehicle. Herein, composite particles were fabricated from PSE-like chicken protein isolate (PPI) and carboxymethyl chitosan (CMCS) at different mass ratios and evaluated as food-grade Pickering stabilizers and carriers for curcumin. It was found that PCS2 composites (PPI:CMCS = 1:1) exhibited the highest absolute zeta potential (-42.93 ± 0.13 mV) and moderate water contact angle (62.2°). Stable Pickering emulsions containing 60% oil were successfully prepared using PCS2, showing improved physical stability and enhanced interfacial structure. Curcumin was effectively encapsulated, with an encapsulation efficiency of 87.80 ± 0.84%, and enhanced antioxidant activity (DPPH scavenging capacity up to 75.63 ± 0.90%, ABTS• + scavenging capacity up to 95.89 ± 0.64%). During simulated gastrointestinal digestion, the optimized Pickering emulsion modulated curcumin release and increased its intestinal bioaccessibility to 65.41 ± 0.07%. Overall, this study demonstrates that CMCS-assisted particle engineering can improve the interfacial functionality of PSE-like chicken proteins, enabling a potential Pickering-stabilized delivery platform for bioactives in food systems.
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