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Molecular characterization and hypoglycemic activity of a novel water-soluble polysaccharide from tea {Camellia sinensis) flower

机译:茶(Camellia sinensis)花中一种新型水溶性多糖的分子表征和降血糖活性

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摘要

Two water-soluble polysaccharide fractions, coded as TFP-1 and TFP-2, were isolated from tea (Camellia sinensis) flower and further characterized using Ubbelohde viscometer, laser light scattering, particle size analyzer and thermo-gravimetric analyzer. Meanwhile, the intrinsic viscosities, weight-average molar mass, gyration radius and hydrodynamic radius for TFP-1 and TFP-2 were shown as follows: [η] = 0.767 and 0.207 dL/g,M_w = 15.9 x10~4 and 1.12 x10~4 g/mol,R_g = 37.2 and 14.1 nm,R_h =44.8 and 14.4nm. Moreover, the shape-factor suggested the molecule morphology adopted a branched spherical shape in Nad solution and the typical thermal behaviors of TFP-1 and TFP-2 were presented in analysis curves. Furthermore, research also presented the inhibitory effects against α-glucosidase and α-amylase. Moreover, continuous administration of TFP-2 with 75, 150 and 300 mg/kg/b.wt for 3 weeks caused a significant (p<0.01) decrease in blood glucose levels of alloxan-induced diabetic mice. The results concluded that TFP-2 should be considered as a potential candidate for new antidiabetic agent.
机译:从茶花中分离出两种水溶性多糖级分,分别为TFP-1和TFP-2,并用乌氏粘度计,激光散射,粒度分析仪和热重分析仪进一步表征。同时,TFP-1和TFP-2的特性粘度,重均摩尔质量,回转半径和流体力学半径如下:[η] = 0.767和0.207 dL / g,M_w = 15.9 x10〜4和1.12 x10 〜4 g / mol,R_g = 37.2和14.1 nm,R_h = 44.8和14.4nm。此外,形状因子表明分子形态在Nad溶液中呈分支球形,并且在分析曲线中显示了TFP-1和TFP-2的典型热行为。此外,研究还提出了对α-葡萄糖苷酶和α-淀粉酶的抑制作用。此外,以75、150和300 mg / kg / b.wt连续施用TFP-2 3周会导致四氧嘧啶诱导的糖尿病小鼠血糖水平显着降低(p <0.01)。结果得出结论,应考虑将TFP-2作为新的抗糖尿病药的潜在候选药物。

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