Citation: | CONG Haihua, ZHOU Qian, WU Youzhi, LU Xiaoyan, YANG Tian. Effect of enzymolysis alginate oligosaccharide on myofibrillar protein in simulated oral digestion[J]. South China Fisheries Science, 2023, 19(2): 124-132. DOI: 10.12131/20220204 |
[1] |
尹艺霖, 刘学军. 不同超声功率处理对鲢鱼肌原纤维蛋白理化特性及凝胶品质的影响[J]. 肉类研究, 2019, 33(3): 14-19.
|
[2] |
WALAYAT N, WANG X K, LIU J H, et al. Kappa-carrageenan as an effective cryoprotectant on water mobility and functional properties of grass carp myofibrillar protein gel during frozen storage[J]. LWT, 2022, 154: 112675. doi: 10.1016/j.lwt.2021.112675
|
[3] |
LU S, NA K, WEI J N, et al. Alginate oligosaccharides: the structure-function relationships and the directional preparation for application[J]. Carbohydr Polym, 2022, 284: 119225. doi: 10.1016/j.carbpol.2022.119225
|
[4] |
荣婧, 仇超颖, 胡晓, 等. 鸢乌贼肌原纤维蛋白糖基化产物功能特性研究[J]. 南方水产科学, 2018, 14(1): 68-76.
|
[5] |
虞铭霞, 张怡, 张宾. 海藻糖和褐藻胶寡糖对冻藏紫贻贝品质的影响[J]. 现代食品科技, 2019, 35(9): 163-169.
|
[6] |
张丽, 史洪涛, 李月勤, 等. 褐藻寡糖对断奶仔猪生长性能、抗氧化性能和肠道消化吸收功能的影响[J]. 中国饲料, 2018, 29(14): 56-61.
|
[7] |
CHEN J Y, CHEN Q M, XIE C Q, et al. Effects of simulated gastric and intestinal digestion on chitooligosaccharides in two in vitro models[J]. Int J Food Sci Tech, 2020, 55(5): 1881-90. doi: 10.1111/ijfs.14337
|
[8] |
仇超颖, 荣婧, 胡晓, 等. 糖基化鸢乌贼肌原纤维蛋白体外消化产物抗氧化性研究[J]. 南方水产科学, 2018, 14(6): 105-112. doi: 10.12131/20180074
|
[9] |
SAIGUSA M, NISHIZAWA M, SHIMIZU Y, et al. In vitro and in vivo anti-inflammatory activity of digested peptides derived from salmon myofibrillar protein conjugated with a small quantity of alginate oligosaccharide[J]. Biosci Biotech Bioch, 2015, 79(9): 1518-1527. doi: 10.1080/09168451.2015.1031075
|
[10] |
WANG X M, CHEN J S. Food oral processing: recent developments and challenges[J]. Curr Opin Colloid Interface Sci, 2017, 28: 22-30. doi: 10.1016/j.cocis.2017.01.001
|
[11] |
杨天, 耿文豪, 郑志红, 等. 褐藻寡糖对鲢鱼鱼糜稳定性、分子间作用力及肌原纤维蛋白结构的影响[J]. 肉类研究, 2021, 35(7): 1-8.
|
[12] |
仪淑敏, 李睿智, 陈杨, 等. 白鲢鱼肌原纤维蛋白双向电泳分析体系的建立[J]. 食品科学, 2017, 38(1): 41-46.
|
[13] |
MINEKUS M, ALMINGER M, ALVITO P, et al. A standardised static in vitro digestion method suitable for food: an international consensus[J]. Food Funct, 2014, 5(6): 1113-1124. doi: 10.1039/C3FO60702J
|
[14] |
XU Y J, ZHAO X, BIAN G L, et al. Structural and solubility properties of pale, soft and exudative (PSE)-like chicken breast myofibrillar protein: effect of glycosylation[J]. Food Sci Technol, 2018, 95: 209-215.
|
[15] |
WANG Z F, HE Z F, ZHANG D, et al. Effect of multiple freeze-thaw cycles on protein and lipid oxidation in rabbit meat[J]. Int J Food Sci Technol, 2021, 56(6): 3004-3015. doi: 10.1111/ijfs.14943
|
[16] |
哈斯, 韩玲钰, 许喆, 等. 碱性pH对马鲛鱼肌球蛋白热聚集行为的影响[J]. 现代食品科技, 2022, 38(4): 114-120, 61. doi: 10.13982/j.mfst.1673-9078.2022.4.0719
|
[17] |
YILDIZ G, DING J Z, ANDRADE J, et al. Effect of plant protein-polysaccharide complexes produced by mano-thermo-sonication and pH-shifting on the structure and stability of oil-in-water emulsions[J]. Innov Food Sci Emerg Technol, 2018, 47: 317-25. doi: 10.1016/j.ifset.2018.03.005
|
[18] |
LI T F, ZHAO J X, HUANG J, et al. Improvement of the quality of surimi products with over-drying potato starches [J]. J Food Qual, 2017: 1417856. Doi: 10.1155/2017/1417856.
|
[19] |
ZHANG Y M, PUOLANNE E, ERTBJERG P. Mimicking myofibrillar protein denaturation in frozen-thawed meat: effect of pH at high ionic strength[J]. Food Chem, 2021, 338: 128017. doi: 10.1016/j.foodchem.2020.128017
|
[20] |
XU Y J, DONG M, TANG C B, et al. Glycation-induced structural modification of myofibrillar protein and its relation to emulsifying properties[J]. LWT, 2020, 117: 108664. doi: 10.1016/j.lwt.2019.108664
|
[21] |
XIE F, SHAO H L, HU X C. Effect of storage time and concentration on structure of regenerated silk fibroin solution[J]. Int J Mod Phys B, 2006, 20(25n27): 3878-3883. doi: 10.1142/S0217979206040520
|
[22] |
ZHONG Y Y, HAN P, SUN S L, et al. Effects of apple polyphenols and hydroxypropyl-β-cyclodextrin inclusion complexes on the oxidation of myofibrillar proteins and microstructures in lamb during frozen storage[J]. Food Chem, 2022, 375: 131874. doi: 10.1016/j.foodchem.2021.131874
|
[23] |
梁雯雯, 杨天, 郭建, 等. 升温方式对鲢鱼肌球蛋白结构和理化性质的影响[J]. 食品科学, 2021, 42(21): 24-31. doi: 10.7506/spkx1002-6630-20201012-086
|
[24] |
陈金玉, 李彬, 何丽丽, 等. 海藻糖和甘露醇对冻融循环引起的虾蛄肌原纤维蛋白结构和功能特性变化的影响[J]. 食品科学, 2019, 40(16): 30-37. doi: 10.7506/spkx1002-6630-20180606-087
|
[25] |
XU Z Z, HUANG G Q, XU T C, et al. Comparative study on the Maillard reaction of chitosan oligosaccharide and glucose with soybean protein isolate[J]. Int J Biol Macromol, 2019, 131: 601-607. doi: 10.1016/j.ijbiomac.2019.03.101
|
[26] |
QIU Y J, JIANG H, DONG Y Y, et al. Expression and biochemical characterization of a novel fucoidanase from flavobacterium algicola with the principal product of fucoidan-derived disaccharide[J]. Foods, 2022, 11(7): 1025. doi: 10.3390/foods11071025
|
[27] |
林巍, 刘晓兰, 任健, 等. 3种还原糖对芸豆清蛋白糖基化改性产物乳化性及结构的影响[J]. 食品与机械, 2019, 35(10): 170-173.
|
[28] |
YANG X Y, SU Y, LI L. Study of soybean gel induced by Lactobacillus plantarum: protein structure and intermolecular interaction[J]. LWT-Food Sci Technol, 2019, 119(2): 108794.
|
[29] |
杨天, 郑志红, 张紫薇, 等. 酶解海洋壳寡糖和褐藻寡糖对鲢鱼糜热稳定性、化学作用力及蛋白质结构的影响[J]. 大连海洋大学学报, 2022, 37(1): 157-165.
|
[30] |
LU H, LIANG Y H, ZHANG X M, et al. Effects of cathepsins on gel strength and water-holding capacity of myofibrillar protein gels from bighead carp (Aristichthys nobilis) under a hydroxyl radical-generation oxidizing system[J]. Foods, 2022, 11(3): 330. doi: 10.3390/foods11030330
|
[31] |
毛小雨, 许馨予, 杨鹄隽, 等. 紫花芸豆蛋白体外消化产物的抗氧化活性及结构特征分析[J]. 食品科学, 2021, 42(3): 56-62.
|
[32] |
LI X P, LIU C K, WANG J X, et al. Tea polyphenols affect oxidative modification and solution stability of myofibrillar protein from grass carp (Ctenopharyngodon idellus)[J]. Food Biophys, 2020, 15(4): 397-408. doi: 10.1007/s11483-020-09635-x
|
[33] |
SHUI S S, QI H, SHAIMAA H, et al. Kappa-carrageenan and its oligosaccharides maintain the physicochemical properties of myofibrillar proteins in shrimp mud (Xia-Hua) during frozen storage[J]. J Food Sci, 2021, 86(1): 140-148. doi: 10.1111/1750-3841.15547
|
[34] |
高涛, 罗黄洋, 吴韧, 等. 川明参多糖在体外模拟消化过程中的结构变化及对消化酶活性的影响[J]. 食品与发酵工业, 2021, 47(23): 98-105.
|
[35] |
刘郁琪, 覃小丽, 阚建全, 等. 酪蛋白与可溶性大豆多糖的酶促糖基化产物制备及其性能分析[J]. 食品科学, 2020, 41(19): 74-82.
|
[36] |
WALAYAT N, TANG W, WANG X P, et al. Effective role of konjac oligosaccharide against oxidative changes in silver carp proteins during fluctuated frozen storage[J]. Food Hydrocoll, 2022, 131: 107761. doi: 10.1016/j.foodhyd.2022.107761
|
[37] |
王伟, 王昱, 陈日新, 等. 海藻酸钠分子质量对低脂乳化肠凝胶特性的影响[J]. 肉类研究, 2019, 33(6): 1-6.
|
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