College of Food Science and Technology, Zhejiang University of Technology, Hangzhou, China; Zhejiang Key Laboratory of Green, Low-carbon and Efficient Development of Marine Fishery Resources, Hangzhou 310014, China; National R&D Branch Center for Pelagic Aquatic Products Processing (Hangzhou), Hangzhou, China.
College of Food Science and Technology, Zhejiang University of Technology, Hangzhou, China; Zhejiang Key Laboratory of Green, Low-carbon and Efficient Development of Marine Fishery Resources, Hangzhou 310014, China; National R&D Branch Center for Pelagic Aquatic Products Processing (Hangzhou), Hangzhou, China.
Food Chem. 2025 Feb 1;464(Pt 2):141684. doi: 10.1016/j.foodchem.2024.141684. Epub 2024 Oct 17.
In this study, the gelatine-polyphenol microgels with dual cryoprotective roles were constructed by regulating the ratio of gelatin to tea polyphenols (1:50-1:250). The physicochemical attributes, ice recrystallization inhibition ability of microgels, and their dosage effects (1 %, 2.5 % and 4 %, w/w) on surimi were investigated. The results indicated that increased gelatin caused the reduced size and enhanced viscosity of microgels. Except for high viscosity and antioxidant activity, the GP-5 group also showed great IRI ability with minimum size distribution (125-214 μm) of ice crystals. Furthermore, 2.5 G group and S group had a comparable TVB-N (3.81, 4.34 mg/100 g), TBARS (1.18, 1.32 mg/kg), sulfhydryl contents (29.52, 25.48 μmol/g) and Ca-ATPase activity (0.44, 0.36 μmolPi/gprot/h). Compared to uneven free water distribution of control group, S and 2.5 G group show more even immobilized-water distribution. Thereafter, the dual cryoprotective functions of microgels in surimi offer valuable insights for the development of effective antifreeze agents.
在这项研究中,通过调节明胶与茶多酚的比例(1:50-1:250),构建了具有双重冷冻保护作用的明胶-多酚微凝胶。考察了微凝胶的物理化学性质、冰晶重结晶抑制能力及其在鱼糜中的剂量效应(1%、2.5%和 4%,w/w)。结果表明,增加明胶会导致微凝胶的粒径减小、粘度增加。除了高粘度和抗氧化活性外,GP-5 组还表现出了很强的 IRI 能力,冰晶的最小粒径分布(125-214μm)。此外,2.5G 组和 S 组的 TVB-N(3.81、4.34mg/100g)、TBARS(1.18、1.32mg/kg)、巯基含量(29.52、25.48μmol/g)和 Ca-ATPase 活性(0.44、0.36μmolPi/gprot/h)相当。与对照组不均匀的游离水分布相比,S 组和 2.5G 组显示出更均匀的固定水分布。此后,微凝胶在鱼糜中的双重冷冻保护功能为开发有效的抗冻剂提供了有价值的见解。