[1] |
ZHOU Yiming, DU Lina, LI Yunlong, ZHOU Xiaoli, CHEN Zhidong.
Effects of High Hydrostatic Pressure and Heat Treatment on Functional Properties of Buckwheat Protein
[J]. FOOD SCIENCE, 2021, 42(5): 77-83.
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[2] |
JIANG Shu, TENG Junwei, LIU Zhenmin, ZHANG Juan.
Effect of High Hydrostatic Pressure Treatment on the Texture, Rheology and Microstructure of Processed Cream Cheese
[J]. FOOD SCIENCE, 2021, 42(5): 84-91.
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[3] |
LIU Chengmei, JIANG Xinlin, LI Dongmei, ZHOU Lei, ZHONG Junzhen, JI Li, LUO Shunjing.
Preparation and Antigenicity of Site-specific PEGylated Beta-lactoglobulin
[J]. FOOD SCIENCE, 2021, 42(2): 1-7.
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[4] |
WANG Jiarong, DING Yangyue, JIANG Yunqing, DONG Heliang, WANG Qiuye, CHENG Jianjun.
Progress in Understanding the Effect of Enzymatic Modification on Gel Properties of Soy Protein Isolate
[J]. FOOD SCIENCE, 2021, 42(15): 329-336.
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[5] |
HUANG Ruijie, LI Mei, LIAO Anping, LAN Ping, ZHONG Lei, QIN Qin, LAN Lihong, WANG Xuejiao, WEI Liming, GAN Lanfang.
Comparison of Acid Hydrolysis and Enzymatic Hydrolysis of Dextran
[J]. FOOD SCIENCE, 2020, 41(6): 43-50.
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[6] |
CHEN Fanfan, TENG Fei, HAN Song, WU Changling, ZHOU Yan, GUO Zengwang, WANG Zhongjiang, LI Yang.
Effect of Enzymatic Hydrolysis of Soymilk on the Microstructure and Physicochemical Properties of Dried Tofu
[J]. FOOD SCIENCE, 2020, 41(5): 23-30.
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[7] |
ZHANG Jing, ZHANG Meili.
Effect of High Hydrostatic Pressure Treatment on Morphological, Thermal and Rheological Properties of Oat Starch
[J]. FOOD SCIENCE, 2020, 41(23): 114-121.
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[8] |
SU Na, YI Li, Jirimutu.
Preparation and Identification of α-Amylase Inhibitory Peptides from Camel Milk Protein
[J]. FOOD SCIENCE, 2020, 41(22): 148-157.
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[9] |
SU Na, Jirimutu, YI Li.
Recent Progress in Biological Functions of Camel Milk Peptides
[J]. FOOD SCIENCE, 2020, 41(21): 321-329.
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[10] |
LI Xuepeng, LIU Yanwei, XIE Xiaoxia, ZHU Wenhui, LI Jianrong, ZHANG Yuyu, LI Tingting, YU Jianyang, MU Weili.
Effect of Thermal Pretreatment on Enzymatic Hydrolysis of Clam (Aloididae aloidi) and Flavor Characteristics of Hydrolysates
[J]. FOOD SCIENCE, 2020, 41(2): 133-140.
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[11] |
YAN Huiming, LI Weizhou, LI Fuhua, ZHAO Jichun, MING Jian.
Effects of High Hydrostatic Pressure Processing on Phenolic Compounds in Fruits and Vegetables: A Review
[J]. FOOD SCIENCE, 2020, 41(15): 323-328.
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[12] |
LI Xue, FENG Tao, SONG Shiqing, ZHUANG Haining, ZHANG Wenhong, YAO Lingyun, SUN Min, XU Zhimin.
Effect of Different Pretreatment Methods on the Release of Flavor Substances from Hypsizygus marmoreus
[J]. FOOD SCIENCE, 2020, 41(10): 198-205.
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[13] |
ZHANG Dengke, ZHANG Huien, ZHU Yanjie, YANG Jupeng, LEI Yesi, YANG Hua, LOU Yongjiang.
Effect of High Hydrostatic Pressure Treatment on Myofibrillar Protein Structure of Cultured Large Yellow Croaker
[J]. FOOD SCIENCE, 2019, 40(9): 61-67.
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[14] |
LIU Qianxia, LIU Dong, ZHANG Jun, WANG Jiao, HE Xingfen, YANG Fumin*, ZHAO Baotang.
Optimization of Hydrolysis Conditions of Qula Casein with Two Proteases and Comparative Antioxidant Activity of Hydrolysates
[J]. FOOD SCIENCE, 2019, 40(8): 225-234.
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[15] |
YE Shengwang, YANG Zuisu, LI Wei, TANG Yunping, HUANG Fangfang, ZHANG Xiaojun, YU Fangmiao, DING Guofang.
Immunomodulatory Effects of Peptides from Enzymatic Hydrolysate of Cyclina sinensis on RAW264.7 Macrophages
[J]. FOOD SCIENCE, 2019, 40(7): 185-191.
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