Structural characterization of a novel polysaccharide from sweet corncob that inhibits glycosylase in STZ-induced diabetic ratsStructural characterization of a novel polysaccharide

被引:0
作者
Xin Wang
Weiye Xiu
Ye Han
Jingnan Xie
Kai Zhang
Kechi Zhou
Yongqiang Ma
机构
[1] Harbin University of Commerce,Heilongjiang Provincial Key Laboratory of Cereal and Comprehensive Processing of Cereal Resources, School of Food Engineering
[2] Harbin Institute of Technology,School of Life Science and Technology
[3] Keshan Branch of Heilongjiang Academy of Agricultural Sciences,undefined
来源
Glycoconjugate Journal | 2022年 / 39卷
关键词
Sweet corncob polysaccharides; Structural characterization; Hypoglycemic effect; Inhibition of glycosylase;
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中图分类号
学科分类号
摘要
In the current study, we extracted a polysaccharide from sweet corncob and evaluated its hypoglycemic function. After collection in water, alcohol precipitation, and purification by DEAE-52 and Sephadex G-100 columns, we obtained a polysaccharide (SCP50) that was composed primarily of mannose and glucose (9.73:190.27), with a molecular weight of 9280.33 Da. We demonstrated that SCP50 exhibited significant inhibition of α-glucosidase activity, with an IC50 of 4.866 mg/mL, Km of 1.297 × 10−3, and Vmax of 0.076 mol/L·min−1in vitro. We also observed that SCP50 markedly attenuated disaccharidase (maltase, sucrase, and lactase) activity in a rat model of T2DM. We conclude that SCP50 exerts a hypoglycemic effect via inhibition of intestinal glycosylase. These results thus provide new insight into the hypoglycemic action underlying sweet corncob polysaccharide’s effects.
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页码:413 / 427
页数:14
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共 143 条
[1]  
Alan S(2020)Cognitive Dysfunction in Older Adults with Type 2 Diabetes: Links, Risks, and Clinical Implications Clin. Geriatr. Med. 36 407-417
[2]  
Ahmed A(2018)Anti-diabetic activity evaluation of a polysaccharide extracted from Gynostemma pentaphyllum Int. J. Biol. Macromol. 38 573-583
[3]  
Wang Z(2021)Degraded polysaccharides from Porphyra haitanensis: purification, physico-chemical properties, antioxidant and immunomodulatory activities Glycoconj. J. 55 1-8
[4]  
Zhao X(2020)Antioxidant and immunomodulatory activities Int. J. Biol. Macromol. 7 2674-2683
[5]  
Liu X(2019) of polysaccharides from bee collected pollen of Chinese wolfberry J Func Foods 54 3086-3092
[6]  
Lu W(2019)Transcriptome profiling reveals the anti-diabetic molecular mechanism of Cyclocarya paliurus polysaccharides Food Sci. Nutr. 82 208-213
[7]  
Jia S(2016)Structural characterization and hypolipidemic activities of purified stigma maydis polysaccharides Pharm. Biol. 5 5-6
[8]  
Hong T(2016)Effects of Maydis stigma polysaccharide on the intestinal microflora in type-2 diabetes J. Food Sci. 106 335-342
[9]  
Li R(1965)Hypoglycemic Activity of Polysaccharides from Sweet Corncob on Streptozotocin-Induced Diabetic Rats Methods in carbohydrate chemistry 176 11-18
[10]  
Zhang H(2014)Removeal of protein-Sevag method Carbohyd. Polym. 96 568-576