共 34 条
- [1] BANERJEE R, MAHESWARAPPA N B., Superchilling of muscle foods: Potential alternative for chilling and freezing[J], Critical Reviews in Food Science and Nutrition, 59, 8, pp. 1256-1263, (2019)
- [2] UTRERA M, MORCUENDE D, GANHAO R, Et al., Role of phenolics extracting from Rosa canina L. on meat protein oxidation during frozen storage and beef patties processing[J], Food and Bio-process Technology, 8, 4, pp. 854-864, (2015)
- [3] QI J, LI C B, CHEN Y J, Et al., Changes in meat quality of ovine longissimus dorsi muscle in response to repeated freeze and thaw[J], Meat Science, 92, 4, pp. 619-626, (2012)
- [4] DU L H, BETTI M., Chicken collagen hydrolysate cryoprotection of natural actomyosin: Mechanism studies during freeze-thaw cycles and simulated digestion[J], Food Chemistry, 211, pp. 791-802, (2016)
- [5] WALAYAT N, XIONG H G, XIONG Z Y, Et al., Role of cryoprotectants in surimi and factors affecting surimi gel properties: A review[J], Food Reviews International, (2020)
- [6] CHEN X, WU J H, LI X Z, Et al., Investigation of the cryoprotective mechanism and effect on quality characteristics of surimi during freezing storage by antifreeze peptides[J], Food Chemistry, 371, (2022)
- [7] CHEN X, WU J H, CAI X X, Et al., Production, structure-function relationships, mechanisms, and applications of antifreeze peptides[J], Comprehensive Reviews in Food Science and Food Safety, 20, 1, pp. 542-562, (2021)
- [8] CHEN X, WU J H, LI L, Et al., Cryoprotective activity and action mechanism of antifreeze peptides obtained from tilapia scales on Streptococcus thermophilus during cold stress[J], Journal of Agricultural and Food Chemistry, 67, 7, (2019)
- [9] SONG D H, KIM M, JIN E S, Et al., Cryoprotective effect of an antifreeze protein purified from Tenebrio molitor larvae on vegetables[J], Food Hydrocolloids, 94, pp. 585-591, (2019)
- [10] DAMODARAN S, WANG S Y., Ice crystal growth inhibition by peptides from fish gelatin hydrolysate[J], Food Hydrocolloids, 70, (2017)