You are in:Home/Publications/Fabrication of chicken 3D-analogs via soy proteins hydrocolloid-mediated noncovalent complexation with lipo-ligands: Mechanistic elucidation and structure-function dynamics

Dr. remah sobhy atia abd elrazek :: Publications:

Title:
Fabrication of chicken 3D-analogs via soy proteins hydrocolloid-mediated noncovalent complexation with lipo-ligands: Mechanistic elucidation and structure-function dynamics
Authors: Remah Sobhy, Ke Zhang, Jianing Zhang, Mohammed Alrugaibah, Thamer Aljutaily, Raed Alayouni, Hassan Barakat, Ibrahim Khalifa, Xiaobo Zou
Year: 2025
Keywords: Not Available
Journal: Not Available
Volume: Not Available
Issue: Not Available
Pages: Not Available
Publisher: Not Available
Local/International: International
Paper Link: Not Available
Full paper Not Available
Supplementary materials Not Available
Abstract:

We aimed to develop 3D-printed chicken analogs with improved structural integrity by leveraging soy protein interactions with lipo-ligands, stabilized by gellan gums. We thus fabricated four formulations and systematically evaluated their rheological, textural, thermal, and structural properties. Additionally, we used molecular docking models to elucidate binding affinities among ingredients. Results indicated that protein-ligand interactions, particularly those involving γ-oryzanol and gellan gum, significantly improved printability, and structural stability. Multispectral and molecular docking analyses revealed that soy protein-oryzanol complexes synergistically reinforced noncovalent interactions (H-bonding and hydrophobic) with gellan gum, enhancing ink cohesion and water retention. These formulations demonstrated optimal viscoelasticity for extrusion and maintained shape fidelity after printing. Thermal analysis …

Google ScholarAcdemia.eduResearch GateLinkedinFacebookTwitterGoogle PlusYoutubeWordpressInstagramMendeleyZoteroEvernoteORCIDScopus