College of Art and Science, Northeast Agricultural University, Harbin 150030, China.
College of Art and Science, Northeast Agricultural University, Harbin 150030, China.
Food Res Int. 2021 May;143:110281. doi: 10.1016/j.foodres.2021.110281. Epub 2021 Mar 9.
In this study, HO-Vc (hydrogen peroxide-ascorbic acid) oxidation system under 50 and 70 °C was developed to degrade blue honeysuckle polysaccharides. The results suggested that viscosity-average molecular weight was decreased and reducing sugar content was raised with the rise of time or temperature. The degradation was fitted to the second-order reaction kinetics. The gas chromatography revealed two degraded polysaccharides were consisted of six monosaccharides (Gal A, Rha, Ala, Gal, Glu, Man) with different ratios, and eight types of sugar residues were confirmed using nuclear magnetic resonance. Based on the linearity (R), branching (R), branch size (R) calculation, PD70 (purified degraded polysaccharide at 70 °C) had a more linear structure and longer side chains comparing to PD50 (purified degraded polysaccharide at 50 °C). The absence of triple helical structure and sheet-like aggregation with rough surface were confirmed by the Congo red test and scanning electron. Rheological characterization proved the two degraded polysaccharides exhibited shear-thinning behavior and viscoelastic property. Besides, the two degraded polysaccharides displayed strong antiglycation activities, inhibitory effects against α-amylase and α-glucosidase, and exhibited competitive inhibitory kinetics. These findings support the potential application of blue honeysuckle polysaccharides as the treatment of diabetes.
在这项研究中,开发了 50 和 70°C 下的 HO-Vc(过氧化氢-抗坏血酸)氧化体系来降解蓝色金银花多糖。结果表明,随着时间或温度的升高,重均分子量降低,还原糖含量升高。降解符合二级反应动力学。气相色谱显示两种降解多糖由六种单糖(Gal A、Rha、Ala、Gal、Glu、Man)组成,比例不同,并使用核磁共振确定了八种糖残基。基于线性度(R)、分支度(R)、分支大小(R)的计算,PD70(在 70°C 下纯化的降解多糖)与 PD50(在 50°C 下纯化的降解多糖)相比,具有更线性的结构和更长的侧链。刚果红试验和扫描电子显微镜证实不存在三螺旋结构和片状聚集且表面粗糙。流变学特性表明,两种降解多糖均表现出剪切稀化行为和粘弹性。此外,两种降解多糖均表现出较强的抗糖化活性、对α-淀粉酶和α-葡萄糖苷酶的抑制作用,并表现出竞争抑制动力学。这些发现支持将蓝色金银花多糖作为治疗糖尿病的潜在应用。