[1] |
ZHOU Sumei, LIU Xiuzhen, GUO Yan, et al. Comparison of the immunological activities of arabinoxylans from wheat bran with alkali and xylanase-aided extraction [J]. Carbohydrate Polymers, 2010, 81(4): 784−789. |
[2] |
刘润民, 魏冰, 宁德鲁, 等. 核桃肽生产工艺的探讨[J]. 粮食与食品工业, 2019, 26(3): 38−40.
LIU Runmin, WEI Bing, NING Delu, et al. Study on the production technology of walnut peptide [J]. Cereal & Food Industry, 2019, 26(3): 38−40. |
[3] |
韦雅虹. 酶解法制备核桃肽及其相关产品开发[D]. 阿拉尔: 塔里木大学, 2024.
WEI Yahong. Preparation of Walnut Peptide by Enzymatic Hydrolysis and Development of Related Products[D]. Ala’er: Tarim University, 2024. |
[4] |
FU Jingjing, HE Fanyu, ZHU Xingtong, et al. Structural characteristics and antioxidant activity of Chinese giant salamander enzymatic hydrolysate-glucose conjugates induced by ultrasound Maillard reaction[J/OL]. Food Bioscience, 2024, 58 : 103654[2024-11-01]. DOI: 10.1016/j.fbio.2024.103654. |
[5] |
SHAKOOR A, ZHANG Chenping, XIE Jianchun, et al. Maillard reaction chemistry in formation of critical intermediates and flavour compounds and their antioxidant properties[J/OL]. Food Chemistry, 2022, 393 : 133416[2024-11-01]. DOI: 10.1016/j.foodchem.2022.133416. |
[6] |
KE Chuxin, LI Liang. Influence mechanism of polysaccharides induced Maillard reaction on plant proteins structure and functional properties: a review[J/OL]. Carbohydrate Polymers, 2023, 302 : 120430[2024-11-01]. DOI: 10.1016/j.carbpol.2022.120430. |
[7] |
OLIVER C M, MELTON L D, STANLEY R A. Creating proteins with novel functionality via the Maillard reaction: a review [J]. Critical Reviews in Food Science and Nutrition, 2006, 46(4): 337−350. |
[8] |
崔玲玉. 长白山核桃蛋白肽的制备及功能活性研究[D]. 长春: 吉林农业大学, 2016.
CUI Lingyu. Preparation and Functional Activity of Walnut Protein Peptide from Changbai Mountain[D]. Changchun: Jilin Agricultural University, 2016. |
[9] |
GUO Rui, XU Zhongxiang, WU Shengfang, et al. Molecular properties and structural characterization of an alkaline extractable arabinoxylan from hull-less barley bran [J]. Carbohydrate Polymers, 2019, 218: 250−260. |
[10] |
国家卫生和计划生育委员会, 国家食品药品监督管理总局. 食品安全国家标准 食品中蛋白质的测定: GB 5009.5—2016[S]. 北京: 中国标准出版社, 2017.
National Health and Family Planning Commission, State Food and Drug Administration. National Food Safety Standard Determination of Protein in Food: GB 5009.5−2016[S]. Beijing: Standards Press of China, 2017. |
[11] |
GUO Qingbin, CUI S W, WANG Qi, et al. Extraction, fractionation and physicochemical characterization of water-soluble polysaccharides from Artemisia sphaerocephala Krasch seed [J]. Carbohydrate Polymers, 2011, 86(2): 831−836. |
[12] |
XU Guanyi, LIAO Aimei, HUANG Jihong, et al. Evaluation of structural, functional, and anti-oxidant potential of differentially extracted polysaccharides from potatoes peels [J]. International Journal of Biological Macromolecules, 2019, 129: 778−785. |
[13] |
JIN Mingyu, LI Meiying, HUANG Riming, et al. Structural features and anti-inflammatory properties of pectic polysaccharides: a review [J]. Trends in Food Science & Technology, 2021, 107: 284−298. |
[14] |
HUANG Meigui, LIU Ping, SONG Shiqing, et al. Contribution of sulfur-containing compounds to the colour-inhibiting effect and improved antioxidant activity of Maillard reaction products of soybean protein hydrolysates [J]. Journal of the Science of Food and Agriculture, 2011, 91(4): 710−720. |
[15] |
WANG Shengnan, NI Liying, FU Xiaoting, et al. A sulfated polysaccharide from Saccharina japonica suppresses LPS-induced inflammation both in a macrophage cell model via blocking MAPK/NF-κB signal pathways in vitro and a zebrafish model of embryos and larvae in vivo[J/OL]. Marine Drugs, 2020, 18 (12): 593[2024-11-01]. DOI: 10.3390/md18120593. |
[16] |
HE Wanying, TIAN Liang, ZHANG Shanshan, et al. A novel method to prepare protein-polysaccharide conjugates with high grafting and low browning: application in encapsulating curcumin[J/OL]. LWT, 2021, 145 : 111349[2024-11-01]. DOI: 10.1016/j.lwt.2021. |
[17] |
ZHANG Anqi, YU Jie, WANG Guorong, et al. Improving the emulsion freeze-thaw stability of soy protein hydrolysate-dextran conjugates[J/OL]. LWT, 2019, 116 : 108506[2024-11-01]. DOI: 10.1016/j.lwt.2019.108506. |
[18] |
TELLO F, FALFAN-CORTÉS R N, MARTINEZ-BUSTOS F, et al. Alginate and pectin-based particles coated with globular proteins: production, characterization and anti-oxidative properties [J]. Food Hydrocolloids, 2015, 43: 670−678. |
[19] |
ZHANG Jixian, JI Tao, YANG Xue, et al. Properties of selenium nanoparticles stabilized by Lycium barbarum polysaccharide-protein conjugates obtained with subcritical water [J]. International Journal of Biological Macromolecules, 2022, 205: 672−681. |
[20] |
NIU Yuge, XIA Qi, JUNG W, et al. Polysaccharides-protein interaction of Psyllium and whey protein with their texture and bile acid binding activity [J]. International Journal of Biological Macromolecules, 2019, 126: 215−220. |
[21] |
TAN T C, ALKARKHI A F M, EASA A M. Ribose-induced Maillard reaction as a quality index in frozen minced chicken and pork meats [J]. Journal of Food Quality, 2013, 36(5): 351−360. |
[22] |
LIU Lu, LI Xiaodong, DU Lingling, et al. Effect of ultrasound assisted heating on structure and antioxidant activity of whey protein peptide grafted with galactose [J]. LWT, 2019, 109: 130−136. |
[23] |
SUN Xianbao, WU Xuejiao, CHEN Xiangyu, et al. Casein-maltodextrin Maillard conjugates encapsulation enhances the antioxidative potential of proanthocyanidins: an in vitro and in vivo evaluation[J/OL]. Food Chemistry, 2021, 346 : 128952[2024-11-01]. DOI: 10.1016/j.foodchem.2020.128952. |
[24] |
ZHANG Xiuxiu, LI Xiaodong, LIU Lu, et al. Covalent conjugation of whey protein isolate hydrolysates and galactose through Maillard reaction to improve the functional properties and antioxidant activity[J/OL]. International Dairy Journal, 2020, 102 : 104584[2024-11-01]. DOI: 10.1016/j.idairyj.2019.104584. |
[25] |
ZHANG Ruifen, KHAN S A, CHI Jianwei, et al. Different effects of extrusion on the phenolic profiles and antioxidant activity in milled fractions of brown rice [J]. LWT, 2018, 88: 64−70. |
[26] |
ZHANG Xinliu, GAO Hao, WANG Chunyan, et al. Characterization and comparison of the structure and antioxidant activity of glycosylated whey peptides from two pathways [J]. Food Chemistry, 2018, 257: 279−288. |
[27] |
MALUNGA L N, IZYDORCZYK M, BETA T. Effect of water-extractable Arabinoxylans from wheat aleurone and bran on lipid peroxidation and factors influencing their antioxidant capacity [J]. Bioactive Carbohydrates and Dietary Fibre, 2017, 10: 20−26. |
[28] |
AGUEDO M, FOUGNIES C, DERMIENCE M, et al. Extraction by three processes of arabinoxylans from wheat bran and characterization of the fractions obtained [J]. Carbohydrate Polymers, 2014, 105: 317−324. |
[29] |
KIM C Y, LEE G Y, PARK G H, et al. Protective effect of arabinoxylan against scopolamine-induced learning and memory impairment [J]. Biomolecules & Therapeutics, 2014, 22(5): 467−473. |
[30] |
翟征远, 白晓悦, 靖一志, 等. 食品中益生元的研发和应用研究进展[J]. 食品科学技术学报, 2024, 42(2): 10−18.
ZHAI Zhengyuan, BAI Xiaoyue, JING Yizhi, et al. Research progress on development and application of prebiotic in foods [J]. Journal of Food Science and Technology, 2024, 42(2): 10−18. |
[31] |
聂卉, 李晓静, 李坚斌. 低聚木糖的生物活性、制备及应用研究进展[J]. 食品研究与开发, 2016, 37(14): 210−213.
NIE Hui, LI Xiaojing, LI Jianbin. The research development on bioactivity, preparation and application of xylooligosaccharides [J]. Food Research and Development, 2016, 37(14): 210−213. |
[32] |
李丽琪. 核桃生物活性评价及其乳剂制备工艺研究[D]. 武汉: 武汉工程大学, 2017.
LI Liqi. Evaluation of Biological Activity of Walnut and Study on Preparation Technology of Its Emulsion[D]. Wuhan: Wuhan Institute of Technology, 2017. |
[33] |
YANG Huayu, YAN Bowen, CHEN Wei, et al. Prediction and innovation of sustainable continuous flow microwave processing based on numerical simulations: a systematic review[J/OL]. Renewable and Sustainable Energy Reviews, 2023, 175 : 113183[2024-11-01]. DOI: 10.1016/j.rser.2023.113183. |
[34] |
SUN Ao, CHEN Lining, WU Wei, et al. The potential meat flavoring generated from Maillard reaction products of wheat gluten protein hydrolysates-xylose: impacts of different thermal treatment temperatures on flavor[J/OL]. Food Research International, 2023, 165 : 112512[2024-11-01]. DOI:10.1016/j.foodres.2023.112512. |
[35] |
LI Rui, WANG Xibo, LIU Jingnan, et al. Relationship between molecular flexibility and emulsifying properties of soy protein isolate-glucose conjugates [J]. Journal of Agricultural and Food Chemistry, 2019, 67(14): 4089−4097. |
[36] |
HUANG Liurong, ZHANG Wenxue, YAN Dongguang, et al. Solubility and aggregation of soy protein isolate induced by different ionic liquids with the assistance of ultrasound [J]. International Journal of Biological Macromolecules, 2020, 164: 2277−2283. |
[37] |
XI Chunyu, KANG Naixin, ZHAO Changhui, et al. Effects of pH and different sugars on the structures and emulsification properties of whey protein isolate-sugar conjugates[J/OL]. Food Bioscience, 2020, 33 : 100507[2024-11-01]. DOI: 10.1016/j.fbio.2019.100507. |
[38] |
MENG Yao, ZHAO Xiao, JIANG Yunqing, et al. Effect of Maillard reaction conditions on the gelation and thermal stability of whey protein isolate/d-tagatose conjugates[J/OL]. Food Chemistry, 2023, 405 : 134928[2024-11-01]. DOI: 10.1016/j.foodchem.2022.134928. |
[39] |
SONG Yongbo, ZHOU Ying, CHEN Lingyun. Wood cellulose-based polyelectrolyte complex nanoparticles as protein carriers [J]. Journal of Materials Chemistry, 2012, 22(6): 2512−2519. |
[40] |
LI Ruiling, XUE Hui, GAO Binghong, et al. Physicochemical properties and digestibility of thermally induced ovalbumin-oil emulsion gels: effect of interfacial film type and oil droplets size[J/OL]. Food Hydrocolloids, 2022, 131 : 107747[2024-11-01]. DOI: 10.1016/j.foodhyd.2022.107747. |
[41] |
HONG Zehan, XIAO Nan, LI Lu, et al. Glycation of whey protein isolate and emulsions prepared by conjugates[J/OL]. Journal of Food Engineering, 2022, 316 : 110852[2024-11-01]. DOI: 10.1016/j.jfoodeng.2021.110852. |
[42] |
LIU Gang, WANG Qi, HU Zhongze, et al. Maillard-reacted whey protein isolates and epigallocatechin gallate complex enhance the thermal stability of the Pickering emulsion delivery of curcumin [J]. Journal of Agricultural and Food Chemistry, 2019, 67(18): 5212−5220. |
[43] |
LIU Ping, LI Yalong, GAO Liu, et al. Effect of different carbohydrates on the functional properties of black rice glutelin (BRG) modified by the Maillard reaction[J/OL]. Journal of Cereal Science, 2020, 93 : 102979[2024-11-01]. DOI: 10.1016/j.jcs.2020.102979. |
[44] |
CHEN Xiumin, KITTS D D. Correlating changes that occur in chemical properties with the generation of antioxidant capacity in different sugar-amino acid Maillard reaction models [J]. Journal of Food Science, 2011, 76(6): C831−C837. |
[45] |
XU Haining, ZHANG Xiaoming, KARANGWA E, et al. Correlating enzymatic browning inhibition and antioxidant ability of Maillard reaction products derived from different amino acids [J]. Journal of the Science of Food and Agriculture, 2017, 97(12): 4210−4218. |