Chang Lixin, Li Ying, Bai Xue, Xia Xiufang, Xu Weidong
College of Food Science, Northeast Agricultural University, Harbin 150030, China.
Office of Student Work, Heilongjiang Agricultural Engineering Vocational College, Harbin 150088, China.
Foods. 2023 Feb 7;12(4):717. doi: 10.3390/foods12040717.
Chitosan ice coating's properties and its inhibitory effect on the quality deterioration of quick-frozen fish balls during repeated freeze-thaw cycles were investigated. When the chitosan (CH) coating concentration increased, the viscosity and ice coating rate increased, while water vapor permeability (WVP), water solubility, and transmittance decreased, and 1.5% CH was regarded as the excellent coating to apply to freeze-thaw quick-frozen fish balls. As the freeze-thaw cycles increased, the frost production, total volatile base nitrogen (TVB-N) values, and free water content of all of the samples increased significantly ( < 0.05), and the whiteness values, textural properties, and water-holding capacity (WHC) decreased. Freeze-thaw cycles expanded the aperture between the muscle fibers and the occurrence of crystallization and recrystallization between cells increased, damaging the original intact tissue structure, which were confirmed by SEM and optical microscopy. Compared with the untreated ones, the frost production, free water, and TVB-N of the samples with 1.5% CH decreased during 1, 3, 5, and 7 cycles, and were reduced by 23.80%, 32.21%, 30.33%, and 52.10% by the 7th cycle. The WHC and texture properties showed an increasing trend during the freeze-thaw cycles. Therefore, the chitosan ice coating effectively inhibited the quality deterioration by reducing water loss, the occurrence of ice crystallization and recrystallization, and the pores of the samples.
研究了壳聚糖冰衣的特性及其对速冻鱼丸在反复冻融循环过程中品质劣化的抑制作用。随着壳聚糖(CH)涂层浓度的增加,粘度和冰衣率增加,而水蒸气透过率(WVP)、水溶性和透光率降低,1.5%的CH被认为是适用于冻融速冻鱼丸的优良涂层。随着冻融循环次数的增加,所有样品的霜产生量、总挥发性盐基氮(TVB-N)值和自由水含量均显著增加(<0.05),白度值、质地特性和持水能力(WHC)降低。冻融循环扩大了肌纤维之间的孔径,细胞间结晶和重结晶的发生增加,破坏了原来完整的组织结构,扫描电子显微镜和光学显微镜证实了这一点。与未处理的样品相比,含1.5%CH的样品在1、3、5和7次循环中的霜产生量、自由水和TVB-N降低,到第7次循环时分别降低了23.80%、32.21%、30.33%和52.10%。在冻融循环过程中,WHC和质地特性呈上升趋势。因此,壳聚糖冰衣通过减少水分损失、冰晶和重结晶的发生以及样品的孔隙,有效地抑制了品质劣化。