| [1] |
KAKAR M U,NAVEED M,SAEED M,et al.A review on structure, extraction, and biological activities of polysaccharides isolated from Cyclocarya paliurus (Batalin) Iljinskaja[J].International Journal of Biological Macromolecules,2020,156:420-429. |
| [2] |
李艳,宁厚齐,李迎秋.海藻渣中岩藻聚糖硫酸酯提取工艺优化[J].轻工学报,2020,35(6):9-15. |
| [3] |
冀晓龙,尹明松,侯春彦,等.红枣多糖提取、分离纯化及生物活性研究进展[J].食品工业科技,2020,41(23):346-353. ,358. |
| [4] |
XU S Y,HUANG X S,CHEONG K L.Recent advances in marine algae polysaccharides:Isolation,structure,and activities[J].Marine Drugs,2017,15(12):388. |
| [5] |
韩莎莎,黄臻颖,沈照鹏,等.酶法降解坛紫菜多糖及其产物分析[J].食品科学,2015,36(21):145-149. |
| [6] |
ZHOU C S,YU X J,ZHANG Y Z,et al.Ultrasonic degradation, purification and analysis of structure and antioxidant activity of polysaccharide from Porphyra yezoensis Udea[J].Carbohydrate Polymers,2012,87(3):2046-2051. |
| [7] |
张海芸,贺亮,李琴,等.降解对植物多糖理化性质以及生物活性影响的研究[J].食品与发酵科技,2019,55(3):15-19. |
| [8] |
邱军强,张华,刘迪迪,等.超声波处理对多糖理化性质和生物活性的影响[J].食品研究与开发,2017,38(16):189-193. |
| [9] |
LI R S,FEKE D L.Rheological and kinetic study of the ultrasonic degradation of locust bean gum in aqueous saline and salt-free solutions[J].Ultrasonics Sonochemistry,2015,27:334-338. |
| [10] |
YUAN D,LI C,HUANG Q,et al.Ultrasonic degradation effects on the physicochemical,rheological and antioxidant properties of polysaccharide from Sargassum pallidum[J].Carbohydrate Polymers,2020,239:116230. |
| [11] |
YAN J K,WANG Y Y,MA H L,et al.Ultrasonic effects on the degradation kinetics,preliminary characterization and antioxidant activities of polysaccharides from Phellinus linteus mycelia[J].Ultrasonics Sonochemistry,2016,29:251-297. |
| [12] |
DOU Z M,CHEN C,FU X.The effect of ultrasound irradiation on the physicochemical properties and α -glucosidase inhibitory effect of blackberry fruit polysaccharide[J].Food Hydrocolloids,2019,96:568-576. |
| [13] |
XU Y Q,GUO Y Y,DUAN S Y,et al.Effects of ultrasound irradiation on the characterization and bioactivities of the polysaccharide from blackcurrant fruits[J].Ultrasonics Sonochemistry,2018,49:206-214. |
| [14] |
徐雅琴,刘菲,郭莹莹,等.黑穗醋栗果实超声波降解多糖的结构及抗糖基化活性[J].农业工程学报,2017,33(5):295-300. |
| [15] |
来水利,潘志友,李晓峰.微波辐射下壳聚糖降解性能的研究[J].陕西科技大学学报,2005(1):38-40. |
| [16] |
梁瑞红,王淑洁,贺小红,等.微波降解果胶对其流变性质的影响及动力学[J].食品科学,2017,38(5):1-6. |
| [17] |
WASIKIEWICZ J M,YEATES S G."Green" molecular weight degradation of chitosan using microwave irradiation[J].Polymer Degradation and Stability,2013,98(4):863-867. |
| [18] |
ZHOU C S,YU X J,MA H L,et al.Examining of athermal effects in microwave-induced glucose/glycine reaction and degradation of polysaccharide from Porphyra yezoensis[J].Carbohydrate Polymers,2013,97(1):38-44. |
| [19] |
石全见,孙利芹,周妍,等.紫球藻胞外多糖抗氧化和免疫调节活性的研究[J].海洋通报,2009,28(5):85-90. |
| [20] |
任瑞,马海乐,朱春梅,等.香菇多糖微波降解反应动力学研究[J].化学工程,2009,37(4):38-40. |
| [21] |
WANG J L,YANG X P,BAO A J,et al.Microwave-assisted synthesis, structure and anti-tumor activity of selenized Artemisia sphaerocephala polysaccharide[J].International Journal of Biological Macromolecules,2017,95:1108-1118. |
| [22] |
SARAVANA P S,CHO Y N,PATIL M P,et al.Hydrothermal degradation of seaweed polysaccharide:Characterization and biological activities[J].Food Chemistry,2018,268:179-187. |
| [23] |
姜美云,唐硕,王婷,等.果胶多糖水热法降解及其产物体外抗氧化性评价[J].食品科学,2019,40(12):253-259. |
| [24] |
MIYAZAWA T,FUNAZUKURI T.Hydrothermal production of mono (galacturonic acid) and the oligomers from poly(galacturonic acid) with water under pressures[J].Industrial & Engineering Chemistry Research,2004,42(10):2310-2314. |
| [25] |
曹毅,谢文.电离辐射的生物效应及健康影响[J].科技导报,2018,36(15):48-53. |
| [26] |
NEMTANU M R,BRASOVEANU M.Degradation of amylose by ionizing radiation processing[J].Starch-Starke,2017,69(3/4):1600027. |
| [27] |
WACH R A,ROKITA B,BARTOSZEK N,et al.Hydroxyl radical-induced crosslinking and radiation-initiated hydrogel formation in dilute aqueous solutions of carboxymethylcellulose[J].Carbohydrate Polymers,2014,112:412-415. |
| [28] |
张卫东,李正魁,朱佳廷,等.壳聚糖电离辐射降解的研究[J].核农学报,2005(1):55-57. |
| [29] |
邓培昌,胡杰珍,侯庆华,等.壳寡糖制备方法研究进展[J].广州化工,2012,40(6):22-24. ,43. |
| [30] |
高玉杰,吕海涛.酸法降解浒苔多糖及其清除羟自由基活性研究[J].食品科学,2013,34(16):62-66. |
| [31] |
VARELA O.Oxidative reactions and degradations of sugars and polysaccharides[J].Advances in Carbohydrate Chemistry and Biochemistry,2003,58:307-369. |
| [32] |
王鑫纯,徐伟,蒋建新,等.野皂荚多糖氧化降解产物的体外代谢过程研究[J].林产化学与工业,2020,40(3):99-107. |
| [33] |
LABOUREL A,FRANDSEN K E H,ZHANG F,et al.A fungal family of lytic polysaccharide monooxygenase-like copper proteins[J].Nature Chemical Biology,2020,16(3):345-350. |
| [34] |
HANGASKY J A,DETOMASI T C,MARLETTA M A,et al.Glycosidic bond hydroxylation by polysaccharide monooxygenases[J].Trends in Chemistry,2019,1(2):198-209. |
| [35] |
GARAJOVA S,MATHIEU Y,BECCIA M R,et al.Single-domain flavoenzymes trigger lytic polysaccharide monooxygenases for oxidative degradation of cellulose[J].Scientific Reports,2016,6:28276. |
| [36] |
岳真,李守玲,李玺,等.羟自由基降解海带硫酸多糖的可行性研究[J].时珍国医国药,2009,20(6):1459-1460. |
| [37] |
SHAO C F,SHAO Q,WANG X Y,et al.Study on cellulose degradation induced by hydroxyl radical with cellobiose as a model using GC-MS, ReaxFF simulation and DFT computation[J].Carbohydrate Polymers,2020,233:115677. |
| [38] |
RODRIGUEZ-JASSO R M,MUSSATTO S I,PASTRANA L,et al.Fucoidan-degrading fungal strains:Screening,morphometric evaluation,and influence of medium composition[J].Applied Biochemistry and Biotechnology,2010,162(8):2177-2188. |
| [39] |
安丽萍,段懿涵,盛瑜,等.姬松茸多糖酶降解对D-半乳糖诱导3T3细胞氧化损伤的保护作用[J].北华大学学报(自然科学版),2019,20(5):653-658. |
| [40] |
陈文,王楠,张民.燕麦多糖的纤维素酶降解及理化性质分析[J].中国食品添加剂试验研究,2014(2):159-163. |
| [41] |
秦丹丹.黑木耳多糖的酶法降解、抗氧化活性及应用研究[D].长春:长春大学,2020. |
| [42] |
万真真,高文宏,曾新安.超声波协同过氧化氢氧化法制备低分子质量大豆多糖[J].食品与发酵工业,2012,38(10):81-85. |
| [43] |
黄海潮,王锦旭,潘创,等.超声波辅助过氧化氢法降解坛紫菜多糖及其抗氧化活性的研究[J].南方水产科学,2020,16(1):110-119. |
| [44] |
WANG J J,SHI S,LI F F,et al.Physicochemical properties and antioxidant activity of polysaccharides obtained from sea cucumber gonads via ultrasound-assisted enzymatic techniques[J].LWT-Food Science and Technology,2022,160:113307. |
| [45] |
LI G S,ZHAO X,LYU Y J,et al.Preparation of κ -carra-oligosaccharides with microwave assisted acid hydrolysis method[J]. Journal of Ocean University of China,2015,14(2):345-349. |
| [46] |
郑宇.微波与H2O2协同降解黑木耳多糖及其产物抗氧化活性、流变性质研究[D].沈阳:沈阳农业大学,2019. |
| [47] |
苏钰琦.苹果多糖的分离纯化与抗氧化活性深入研究[D].杨凌:西北农林科技大学,2008. |
| [48] |
GONG G P,ZHAO J X,WEI M,et al.Structural characterization and antioxidant activities of the degradation products from Porphyra haitanensis polysaccharides[J].Process Biochemistry,2018,74:185-193. |
| [49] |
ZHANG Z S,WANG X M,LIU C B,et al.The degradation,antioxidant and antimutagenic activity of the mucilage polysaccharide from Dioscorea opposite[J].Carbohydrate Polymers,2016,150:227-231. |
| [50] |
MOU J J,WANG C,LI Q,et al.Preparation and antioxidant properties of low molecular holothurian glycosaminoglycans by H2O2/ascorbic acid degradation[J]. International Journal of Biological Macromolecules,2018,107:1339-1347. |
| [51] |
WU J W,LI P,TAO D B,et al.Effect of solution plasma process with hydrogen peroxide on the degradation and antioxidant activity of polysaccharide from Auricularia auricula[J].International Journal of Biological Macromolecules,2018,117:1299-1304. |
| [52] |
QIN Y Y,XIE J,XUE B,et al.Effect of acid and oxidative degradation on the structural, rheological, and physiological properties of oat β -glucan[J].Food Hydrocolloids,2021,112:106284. |
| [53] |
WANG J L,BAO A J,MENG X H,et al.An efficient approach to prepare sulfated polysaccharide and evaluation of anti-tumor activities in vitro[J].Carbohydrate Polymers,2018,184:366-375. |
| [54] |
YU X J,ZHOU C,YANG H,et al.Effect of ultrasonic treatment on the degradation and inhibition cancer cell lines of polysaccharides from Porphyra yezoensis[J].Carbohydrate Polymers,2015,117:650-656. |
| [55] |
ZHENG Q R,LI W,LIANG S,et al.Effects of ultrasonic treatment on the molecular weight and anti-inflammatory activity of oxidized konjac glucomannan[J].CyTA-Journal of Food,2019,17(1):1-10. |
| [56] |
DU B,ZENG H S,YANG Y D,et al.Anti-inflammatory activity of polysaccharide from Schizophyllum commune as affected by ultrasonication[J].International Journal of Biological Macromolecules,2016,91:100-105. |
| [57] |
YU P Z,LI N,LIU X G,et al.Antihyperlipidemic effects of different molecular weight sulfated polysaccharides from Ulva pertusa (Chlorophyta)[J].Pharmacological Research,2003,48(6):543-549. |