粘弹性
面筋
网络结构
材料科学
食品科学
化学
复合材料
计算机科学
机器学习
作者
Tingting Hong,Zhiwen Tan,Dan Xu,Yamei Jin,Fengfeng Wu,Guidong Huang,Xianfeng Zhong,Junhui Zhang,Xueming Xu
标识
DOI:10.1016/j.fochx.2025.102437
摘要
This study investigated the effects of zein addition on the viscoelastic properties and gluten network of wheat dough. Results from Mixolab and dynamic rheometer showed that 2–3 % zein enhanced dough softness without affecting development time, stability, or creep recovery, while reducing pasting viscosity. Zein increased free water mobility, which decreased dough rigidity and facilitated deformation. Dough with 3 % zein showed a 26.50 % increase in free water relaxation time (T23). SE-HPLC revealed reduced gluten aggregation, increasing SDS-soluble polymeric and monomeric proteins and free sulfhydryl (SH) groups by 20 %. FTIR showed zein promoted antiparallel β-sheets and decreased β-sheet content. TGA indicated a 1.57 % increase in mass loss, and prolonged mixing lowered degradation temperature. CLSM confirmed zein weakened the gluten structure. These findings provided a better understanding of the interactions between zein and gluten in wheat dough, which could help optimize dough processing and improve product quality. • Zein increased loss modulus, with 3 % showing no significant difference in dough creep recovery. • Zein addition increases free water activity during dough formation. • Zein enhances SDS-soluble protein content, reducing dough protein aggregation. • Secondary structure shifts in gluten occur with increased antiparallel β-sheet content due to zein.
科研通智能强力驱动
Strongly Powered by AbleSci AI