Physicochemical, Techno-Functional, and Storage Properties of Chicken Skin-Based Protein–Fat Emulsions

Chicken skin and related poultry by-products are rich in collagen and lipids but remain underutilized, creating opportunities for their conversion into value-added functional ingredients. This study developed chicken-skin-based protein–fat emulsions and evaluated the effect of changing the fat-to-hydrolysate ratio on their physicochemical, techno-functional, compositional, rheological, oxidative, and microbiological properties. Four formulations containing 13.5–15.0% chicken fat and 6.8–5.3% chicken skin protein hydrolysate were prepared, while chicken skin and water were maintained at 36.4 and 43.3%, respectively. Three independent production batches were prepared for each formulation. The emulsions showed similar pH (4.82–4.99) and water activity (0.979–0.996) (p > 0.05). Water-holding capacity decreased from 78.74% to 73.60%, whereas fat-holding capacity increased from 41.00% to 62.40% (p < 0.05). Variant 3 showed the highest emulsion stability (22%) and an emulsifying capacity of 56%, while Variant 4 had the highest apparent viscosity (577 mPa·s) but the lowest yield stress (2.011 Pa). The emulsions exhibited a collagen-rich amino acid profile, and oleic, palmitic, and linoleic acids predominated in the lipid fraction. During refrigerated storage, TBARS increased from 0.34–0.37 to 2.19–2.51 mg MDA/kg, while total viable counts reached 3.83–4.03 log CFU/g by day 14. Among the tested formulations, Variant 3 showed a favorable combination of stability and emulsifying and rheological properties. These results identify chicken-skin-based protein–fat emulsions as candidate functional ingredients for further evaluation in food formulations.

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Processes
Published
2026-09-28
DOI
https://doi.org/10.3390/pr14193109
Primary Topic
Proteins in Food Systems
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article
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Physicochemical, Techno-Functional, and Storage Properties of Chicken Skin-Based Protein–Fat Emulsions

Madina Jumazhanova, Anuarbek Suychinov, Аlibek Muratbayev, Aitbek Kakimov et al.
Processes
Proteins in Food Systems
article

Physicochemical, Techno-Functional, and Storage Properties of Chicken Skin-Based Protein–Fat Emulsions

Madina Jumazhanova, Anuarbek Suychinov, Аlibek Muratbayev, Aitbek Kakimov, Ayaulym Mustafayeva, Eleonora Okuskhanova, Assel Dautova, Guldana Kapasheva
article en

Abstract

Chicken skin and related poultry by-products are rich in collagen and lipids but remain underutilized, creating opportunities for their conversion into value-added functional ingredients. This study developed chicken-skin-based protein–fat emulsions and evaluated the effect of changing the fat-to-hydrolysate ratio on their physicochemical, techno-functional, compositional, rheological, oxidative, and microbiological properties. Four formulations containing 13.5–15.0% chicken fat and 6.8–5.3% chicken skin protein hydrolysate were prepared, while chicken skin and water were maintained at 36.4 and 43.3%, respectively. Three independent production batches were prepared for each formulation. The emulsions showed similar pH (4.82–4.99) and water activity (0.979–0.996) (p > 0.05). Water-holding capacity decreased from 78.74% to 73.60%, whereas fat-holding capacity increased from 41.00% to 62.40% (p < 0.05). Variant 3 showed the highest emulsion stability (22%) and an emulsifying capacity of 56%, while Variant 4 had the highest apparent viscosity (577 mPa·s) but the lowest yield stress (2.011 Pa). The emulsions exhibited a collagen-rich amino acid profile, and oleic, palmitic, and linoleic acids predominated in the lipid fraction. During refrigerated storage, TBARS increased from 0.34–0.37 to 2.19–2.51 mg MDA/kg, while total viable counts reached 3.83–4.03 log CFU/g by day 14. Among the tested formulations, Variant 3 showed a favorable combination of stability and emulsifying and rheological properties. These results identify chicken-skin-based protein–fat emulsions as candidate functional ingredients for further evaluation in food formulations.

ProcessesVol. 14(19)
S.Seifullin Kazakh Agro Technical University (KZ), Shakarim University (KZ)
Openalex Percentile: Top 14%
Proteins in Food Systems
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