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June 6, 2026Poultry Science0 citationsOpen Access

Effects of chicken-liver-hydrolysate paste addition on structure-function relationships in emulsion-type sausages

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YCYu-Jui ChenJCJr-Wei ChenYCYi-Chen Chen

Key Points

  • This research explores the integration of chicken-liver-hydrolysate pastes into chicken sausages to improve sustainability and product quality.
  • Partially substituted chicken breast with 0-20% CLHPs in emulsion-type sausages.
  • Measured viscoelasticity, water distribution, cooking yield, and texture attributes post-cooking.
  • Analyzed microstructural changes and color characteristics in relation to CLHP levels.
  • At 20% CLHP, cooking yield and water-holding capacity decreased (P<0.05) alongside increased lipid oxidation.
  • Incorporation of CLHPs improved physicochemical properties up to 15% but caused destabilization and structural disruption beyond that.
  • Color analysis showed reduced lightness and increased redness with higher CLHP inclusion levels.

Abstract

ABSTRACT This study aimed to investigate the possible application on intergradation of chicken-liver-hydrolysate pastes (CLHPs) with meat products, which could enrich the utilization of CLHPs to meet the agrocycle principle. CLHPs rich in polyunsaturated and ω-3 fatty-acid contents, were evaluated as sustainable raw-meat replacers in emulsion-type chicken sausages. Chicken breast was partially substituted with 0∼20% CLHPs. Increasing CLHP incorporation reduced viscoelasticity in raw meat batter as indicated by a decrease in storage modulus (G′), and altered water distribution in cooked meat batters, with LF-NMR T₂ relaxometry showing increased bound water and decreased free water. In cooked sausages, excessive CLHP addition (20%) destabilized the emulsion system, resulting in reduced cooking yield and water-holding capacity, together with elevated lipid oxidation ( P < 0.05). Textural attributes were concurrently weakened at high substitution levels. CLHP inclusion altered color characteristics by decreasing lightness and increasing redness. Microstructural observations confirmed structural disruption and oil droplet coalescence at high inclusion levels. Overall, CLHP substitution should be limited to 15% to preserve emulsion stability and product quality. This research demonstrated that CLHPs are a novel value-added ingredient derived from broiler by-products. Their appropriate incorporation improved physicochemical properties in emulsified meat systems and provides practical guidance for partial meat replacement. These findings support the development of sustainable meat processing strategies and contribute to the valorization of poultry by-products within a circular food economy.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/6a23b96a71a5da9775e754dahttps://doi.org/10.1016/j.psj.2026.107222
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