College of Food Science and Nutritional Engineering, China Agricultural University, P.O. Box 111, Qinghua Donglu No. 17, Beijing, 100083, PR China.
Food Funct. 2020 Sep 23;11(9):7973-7986. doi: 10.1039/d0fo01652g.
To enhance the hypoglycemic effects of inulin, banana condensed tannins (BCT) were grafted onto inulin via a free radical method to synthesize the novel BCT grafted inulin (BCT-g-inulin) complex. Spectroscopic methods, XRD, TGA, 1H NMR, GPC and morphology analyses were utilized to characterize the structural properties of the BCT-g-inulin complex, and our results confirmed the conjugation of BCT and inulin. The conjugation possibly occurred between the hydroxyl group attached at the C6 position of inulin and the C6/C8 position of flavon-3-ol units of BCT. The grafting ratio and grafting efficiency of the BCT-g-inulin complex were 357.54 ± 2.98 g kg-1 complex and 74.57 ± 1.44%, respectively. The data of the antioxidant assays indicated that the BCT-g-inulin complex showed a significantly higher antioxidant activity than native inulin. Also, the grafting reaction remarkably improved the in vitro anti-diabetic activity of inulin. The glucose adsorption capacity and glucose dialysis retardation index of the BCT-g-inulin complex were remarkably higher than those of inulin, while the BCT-g-inulin complex showed much stronger inhibitory effects against α-amylase and α-glucosidase compared with inulin. Notably, the inhibition of both α-amylase and α-glucosidase by the BCT-g-inulin complex occurred through mixed-competitive mode. On the basis of fluorescence spectroscopy, the fluorescence of α-amylase and α-glucosidase could be quenched by the BCT-g-inulin complex through a static quenching mechanism. Hence, the BCT-g-inulin complex might have the potential to be developed as an effective anti-diabetic agent.
为了增强菊粉的降血糖效果,通过自由基法将香蕉缩合单宁(BCT)接枝到菊粉上,合成了新型 BCT 接枝菊粉(BCT-g-inulin)复合物。利用光谱法、XRD、TGA、1H NMR、GPC 和形态分析对 BCT-g-inulin 复合物的结构性质进行了表征,结果证实了 BCT 和菊粉的接枝。BCT 和菊粉之间的接枝可能发生在菊粉 C6 位上的羟基与 BCT 中黄酮-3-醇单元的 C6/C8 位之间。BCT-g-inulin 复合物的接枝率和接枝效率分别为 357.54±2.98 g kg-1 复合物和 74.57±1.44%。抗氧化试验结果表明,BCT-g-inulin 复合物的抗氧化活性明显高于天然菊粉。此外,接枝反应显著提高了菊粉的体外抗糖尿病活性。BCT-g-inulin 复合物的葡萄糖吸附能力和葡萄糖透析延迟指数明显高于菊粉,而 BCT-g-inulin 复合物对α-淀粉酶和α-葡萄糖苷酶的抑制作用明显强于菊粉。值得注意的是,BCT-g-inulin 复合物对α-淀粉酶和α-葡萄糖苷酶的抑制作用均通过混合竞争模式发生。基于荧光光谱,BCT-g-inulin 复合物可以通过静态猝灭机制猝灭α-淀粉酶和α-葡萄糖苷酶的荧光。因此,BCT-g-inulin 复合物可能有潜力开发为有效的抗糖尿病药物。